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HP0-M19 - HP Virtual User Generator Software - Dump Information

Vendor : HP
Exam Code : HP0-M19
Exam Name : HP Virtual User Generator Software
Questions and Answers : 59 Q & A
Updated On : December 17, 2018
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HP0-M19 Questions and Answers

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HP0-M19 HP Virtual User Generator Software

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HP0-M19 exam Dumps Source : HP Virtual User Generator Software

Test Code : HP0-M19
Test Name : HP Virtual User Generator Software
Vendor Name : HP
Q&A : 59 Real Questions

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HP HP Virtual User Generator

What’s All This HP Museum Stuff, in any case? | killexams.com Real Questions and Pass4sure dumps

Ken Kuhn (Fig. 1), an adjunct professor in the branch of Electrical and laptop Engineering at the tuition of Alabama at Birmingham, wrote Bob Pease again in January of 2006, “just a short notice to make you aware about my net site devoted to analog electronics and background. Take the graphic tour of my shop and museum (Fig. 2). This could be one of the most biggest domestic electronics stores any place. All of this old analog electronics is menu driven using analog GUI— the gadgets function the feature the knobs point to. No programming required. aid menus no longer essential. I get pleasure from your column in digital Design— keep up the respectable work.”

1. Ken Kuhn along with his cat in entrance of a working bench at his HP Museum in Alabama. (Courtesy of Ken Kuhn)

2. As an analog aficionado, Kuhn’s cache of cool look at various gadget also has Tektronix, popular Radio, and lots of different historic, basic examine gadget. (Courtesy of Ken Kuhn)

Pease thanked Ken for the praise about his articles and added an emphatic “That, i admire!!” regarding the analog GUI (graphical user interface). After reviewing the web site, Pease noted,

“in one paragraph you say, "There ought to be a publication...." I noticed the booklet concerning the 25 very best items of HP; that got here out from HP, a couple of dozen years in the past. Or turned into it 18 or 20? I purchased and studied it and discovered some. Do you have that publication? I do not know where I put mine. It was once first rate mattress-time reading. Do you have got a "wanted checklist" of historic HP instruments or guide Manuals? I, too, used to study the schematics of the new gadgets reminiscent of Tektronix, HP, information Precision, and so on. and many others. at the moment, every thing is so computerized, and most of it, I hate. Menus, I hate. I opt for your analog gui. it be like analog PowerPoint. hey, in a couple months, can i ship individuals to your museum? there's additionally a Philbrick Archive, and i should still also send individuals to look at that. finest regards. / rap”

Pease should have pored over Ken’s website again, due to the fact four hours later he wrote lower back, “howdy, Ken. it really is a really excellent museum! firstly i was worried about those tall racks of machine (Fig. 3), were just an invite for an earthquake to knock all of them down. however as you seem to are living in Alabama, I guess they're secure. i hope you don't seem to be too close to that earthquake site in New Madrid, Illinois, or Missouri, or something. I guess you are at the least 100 miles away, permitting for the size of Mississippi. Very first-class work!!”

three. Bob Pease involved concerning the earthquake stability of those tall racks in Kuhn’s assortment. Kuhn assured Pease that there were few earthquakes in Alabama, and the racks are laced to posts conserving up the roof. (Courtesy of Ken Kuhn)

Kuhn wrote back,

“I are living in Birmingham, Alabama so earthquake chance is minimal. despite the fact, the row of racks is going to be secured to the condominium posts (I think they are obscured in the photo) just for coverage.

“As for the HP publication you mentioned. i am not aware of that specific one. despite the fact, there changed into an HP publication that was posted in 1983 titled, ‘inventions of possibility: Matching know-how with Market needs.’ This publication became chosen articles from the HP Journal. This publication featured about 31 significant HP instruments. I even have this book and it's astonishing reading. That may be the one you are speaking about. FYI: there are two books in regards to the heritage of HP that are being written now and that i bet could be published this year or next. One is a biography of Mr. Hewlett, Mr. Packard, and the enterprise, and is being written by way of Michael Malone— a familiar writer of books about Silicon Valley. The other booklet is being written through two former HP employees and may be more in regards to the enterprise.

“As for a desire list for HP device, I do have a minimal checklist, I personal most every thing else. This record contains an HP204A oscillator and manual. This one become a battery-operated vacuum tube moveable unit and is very infrequent. I actually have the extra general HP204B, C, and D contraptions. additionally an HP200T oscillator. this is a unique version of the HP200 collection oscillators for telemetry testing. it is the most effective 200 collection oscillator I shouldn't have. i do know there are just a few more, however my intellect is blank for the time being.

“i am attracted to finding an HP803A VHF Impedance bridge and the HP417A VHF detector that goes with it. I actually have these in my collection, however HP is interested in acquiring this set for the archives. remaining fall i was contacted by means of art Fong in Palo Alto (see some article links about him on my internet web site page about HP men and women) who turned into the engineer who developed these and he discovered them on my web web page. He changed into working with Anna Mancini (HP company archivist) attempting to locate these for a documentary HP changed into filming. I didn't want to sell my instruments however provided to mortgage them for the film however cut-off dates ran out. Anna told me that HP nevertheless desired to purchase a group. I talked about that i'd wait for some to demonstrate up. I even have checked every source i do know but no success up to now— these contraptions are very rare.

“feel free to refer people to my net website. I also can provide very own tours. One income adult from Agilent is planning to take the tour subsequent time he's on the town. plenty greater is coming for the net site as I have time, so verify returned every so often to look new material. I loved assembly you about two years ago if you had been doing a country wide Analog Seminar in Huntsville. Hope to look you again at some point. i'm well-known and widespread locally for my analog electronics talents. i was literally drafted a long time in the past to train night analog electronics on the university of Alabama, Birmingham. I actually have been doing that for in regards to the remaining 18 years besides my day job. concerned with now, Ken.”

Pease instantly forwarded the thread to me and a few chums. He noted, “hi, guys, this memo includes his "need record". I bet, even here within the Valley, it might be slim pickings to find such ancient stuff. I instructed him he need to post a little "wanted" area on his web pages. / rap”

I dropped a notice to Kuhn to ask permission to run his pictures and quote him. He introduced:

“I truly miss Bob Pease. He changed into my type of guy. I have a couple of emails with him and also bought to fulfill him some years in the past. i am now retired however am working pretty much full time on an enchanting analog electronics mission i was drafted into. I have an article in digital Design about corridor networks used to make notch and bandpass filters. there's additionally a pdf of the content on my very own web site. I even have been contacted via just a few individuals who saw it and had enjoyable functions.

“I also operate the HP memory task, which become developed by a friend of mine, Marc Mislanghe, who worked for HP France. unfortunately, he died in 2014 and i was drafted to take over the web site. The web site is large with lots of data and memoirs of former HP engineers.

“some of the books that had not been published at the time of my correspondence with Pease is ‘The HP Phenomenon’ written through Charles house and Raymond price. It was posted in 2009 and i am outlined within the book. i do know Mr. house and provided a little analysis for him. The Michael Malone e-book is ‘invoice and Dave.’ I met Mr. Malone and supplied him some research too. round 2007 I donated an HP417A and HP803A to the Agilent background core. I additionally donated an HP200B oscillator to Stanford institution and it is on screen on the HP storage reveal on the Huang Engineering center.

“I have had the pleasure of an interior tour of the famous HP garage and apartment. There are YouTube video clips [check out one of them below] of shows on the HP company auditorium that my friends, Glenn Robb, Marc Mislanghe, and i did again in 2007 about our HP historical past work and websites. The Hewlett Packard Archive site operated by Glenn Robb also has loads of HP information.”

I should additionally point out my buddy and fellow tech creator Steve Leibson’s web site concerning the HP 9825 computing device computing device from 1977. The web site has counsel on prior and later HP computers as neatly. Leibson writes with the conviction of a former Colorado HP employee.

Stanford professor Tom Lee advised me about HP giving a excessive school scholar an oscilloscope returned in the Nineteen Sixties. Kuhn knew all about that story and forwarded me a 2009 electronic mail titled “A heartwarming HP story.” It turned into by using Ken Chalfant, the engineer who received the free ‘scope. Chalfant wrote:

“My story related to Hewlett Packard begins in 1967 when i was a junior excessive college student, age 13. i used to be already absolutely focused on electronics, owned an EICO VTVM (vacuum-tube voltmeter), and was trying to shop up cash to buy a package-kind oscilloscope from HeathKit. My science class went on a tour of the native HP plant right here in Colorado Springs, CO. Wall to wall, as far as I might see, have been oscilloscopes and test equipment thus far past awesome that I practically had a seizure.

“when I acquired domestic I referred to as out to the plant and asked if they had any used scopes for sale. ‘We do not sell our used machine.’ got here the reply. ‘How a lot is your cost effective scope in equipment kind?’ I asked. ‘We put all our machine collectively, we do not offer kit kind.’ become the reply, adopted by using ‘Would you love a catalog?’

“My mom took me out to the plant and i met Norm hall, the native advertising manager that I had talked to on the cellphone. He gave me a replica of their catalog. Oh my! What a catalog. It changed into very nearly an inch thick of shiny pages stitched hard-certain into a beautiful e-book. I took it all over and wore it out. It became no longer most effective full of their gadget, but a very good deal of tips on how their machine labored and how to follow it. That catalog changed into my first electronics instrumentation text book. I still have that accurate reproduction and that i have additionally purchased a pristine copy for my library.

“i was not ready to give up on getting an HP scope, so I wrote Mr. Hewlett a letter and asked him if I might buy a used one. neatly, to keep a protracted story a little shorter, Mr. Hewlett gave me a 120B scope. Forty years to the month later, Agilent [now Keysight] rediscovered the story of what Mr. Hewlett had carried out for me. Jay Alexander, now CTO of Keysight, invited me out to the factory as a visitor speaker to discuss Mr. Hewlett and the ‘ancient’ HP days, even though I even have on no account worked for HP. Then they did it once again— they gave me one other scope (Fig. four), an MSO6054A. Wow, what an awesome oscilloscope. i really like it!

4. As a 13-yr-old electronics lover, Ken Chalfant wrote bill Hewlett asking to purchase a used oscilloscope. Hewlett sent him a fresh one. Forty years later, Agilent (now Keysight) celebrated the event by means of giving Chalfant another free ‘scope. (Courtesy of Ken Chalfant)

“It’s fantastic that a man I in no way met and a corporation I certainly not worked for have had any such profound and nice influence on my existence. Mr. Hewlett and a few Colorado Springs engineers like Blair Harrison, the heart beat generator lab supervisor who kindly tolerated me, giving me constituents, and turning me free to confer with his engineers at the plant, helped me so lots when i was simply a child. Then after telling ‘my’ story and assisting them bear in mind how surprising Mr. Hewlett and HP in reality had been, they ‘framed’ my life through giving me one more scope.

“Of direction, i am fully biased, but I doubt there will ever be two more enormous and honorable business people then Mr. Hewlett and Mr. Packard. I don't feel anyone will ever construct a company with a view to make a contribution as a great deal in technical terms and so a good deal extra in human terms than did Mr. Hewlett and Mr. Packard. Agilent [now Keysight too] nevertheless makes excellent equipment and there are many outstanding, caring, involved americans working there, however without Dave and bill, Agilent is not, and under no circumstances might be the ancient Hewlett Packard.”

After checking with Chalfant for permission to run his picture and words, he referred to, “I have all the time been a little shocked, probably humbled is a stronger note, that I actually have been blessed more than as soon as by using Mr. Hewlett’s variety generosity. In a small manner the story is ready me as a child, however in an even bigger way the story is all about Mr. Hewlett. It in reality is an opportunity to benefit perception into one of the crucial two men who created the most effective business in an effort to ever exist. by using comparison I don’t think there are any great company leaders. growing to be up, my friends envied activities heroes, rock-n-roll stars, and movie stars. I didn’t care about any of that. The one man I admired, and nevertheless do, is Mr. Hewlett.” Chalfant then brought, “I nevertheless have, and may at all times have, that a hundred and twenty-B oscilloscope.”

Like Chalfant, i'm biased as smartly. I consulted to the HP automotive methods Division again in 1998. The HP approach changed into alive and smartly, and it turned into one of the vital greatest jobs I ever had, with the greatest boss I have ever met. If any of the brand new HP entities, Keysight, or Agilent, or HP commercial enterprise, are looking to be mindful the fierce loyalty they have got from engineers, they should still believe about how invoice Hewlett and Dave Packard handled a young junior high faculty kid from Colorado, and the way they impressed college professors and others to document the business’s legacy (Fig. 5). it's the way you build a company.

5. one more working bench in Ken Kuhn’s HP Museum. observe the music lighting fixtures for the benchtop. (Courtesy of Ken Kuhn)

That Colorado Springs advertising and marketing manager giving a 13-year-old child a pricey complicated-sure catalog did not aid that quarter’s revenue. Yet the lengthy-term improvement to HP/Agilent/Keysight/HP business is just about incalculable. That’s the change between advertising and marketing and revenue. greater agencies should learn that.


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Hackers understand a first-rate target when they spot one. lamentably, small-to-midsize companies (SMBs) are often these top objectives. a lot of small company owners want to feel that malicious attackers don’t have anything to benefit via going after “the little guy,” or that they don’t have plenty to lose.

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Malware

Malware is malicious utility designed to infiltrate computing device programs and extract any important guidance it could find. It comes in several different types, including viruses, adware, Trojans, rootkits, and worms.

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Phishing

A phishing rip-off happens when cyber attackers send fraudulent emails pretending to be from a depended on source, but lead individuals to inadvertently deliver very own or professional suggestions straight to a hacker by the use of a malicious site hyperlink.

a lot of people believe they’re too smart to get caught up in a phishing scam. with the aid of now, as an example, most people know that a Nigerian prince doesn’t truly want to share his fortune. however hackers are at all times setting up centered, refined emails that seem authentic and comfortable. for instance, protection consultants are at present worried about a phishing attack the place victims get hold of an email that seems like one despatched from FedEx. The email instructs the recipient to click on on a link that claims to help them manage a package beginning, but in its place, clicking on the link offers a hacker access to their device’s device and suggestions.

Ransomware

just like the identify implies, ransomware attackers demand a charge in an effort to stop their attack, making this one of the crucial frustrating and devastating expertise breaches. during a ransomware assault, hackers unfold malicious software during a tool or a complete equipment. The software shuts down those devices or techniques until a fee has been made. in addition to figuring out whether or not to fork over funds to the individuals attacking them, SMBs also have to spend cash bolstering their safety systems and making up for the lost productiveness.

a kind of most wide-accomplishing ransomware assaults became the WannaCry worm of 2017, which hit greater than 230,000 computers across the globe that have been running out of date or prone systems. The attackers demanded $300 in bitcoin from their victims, threatening to delete critical information if the ransom wasn’t paid. Most didn’t pay the price, but they nonetheless had to wait days for security fixes to be issued. The assault crippled England’s country wide fitness equipment, shut down Australian speed cameras, forced a Honda factory in Japan to close down, and all in all is estimated to have can charge victims within the billions.

Spoofing

Spoofing assaults occur when the hacker sends out emails pretending they’re a person they’re not. for example, attackers send out an email that appears to be from the company’s CEO or HR branch requesting data on private business facts. An worker would then ship that data along to who they believe is their superior, but is really a cyber attacker.

In a case like that, spoofing emails can hurt a SMB directly. however they can additionally trigger devastation by way of indirect techniques, as well. for example, German banking chain Deutsche financial institution these days had to pay a $30 million first-class after two of their former merchants launched a a hit spoofing attack that manipulated the costs of valuable metals futures on the commodities market. A banking tremendous can afford that price, however small companies could no longer be able to have enough money the losses that could come from believing fraudulent, incorrect advice about the markets.

Rootkit

Rootkit is sneaky and clandestine utility that enables an out of doors consumer to take control of a tool devoid of the proprietor’s competencies. Like any other cyber assaults, that control offers a hacker entry to the equipment’s at ease community and files. however a rootkit is additional unhealthy as a result of, moreover getting access to these files, the hacker also has complete manage of the equipment. That means they could alter community configurations, falsify files, override safety mechanisms, and infect the equipment with extra malware. The attacker can also undercover agent on the device’s owner, as an instance by using recording every sites they consult with and supplied credential tips. unfortunately, rootkits are very problematic to become aware of and almost always require the work of professionals to remove.

one of the crucial threatening rootkits is LoJax. security specialists fret that they've handiest seen the beginning of this rootkit, which is currently spreading. at the moment, attackers are using it to regulate protection programs and then infect gadgets with much more malware. since the attackers retain handle of the machine, they can be sure that the malicious application is done, all with out detection. Researchers worry that attackers will increase even more sophisticated LoJax breaches within the months and years to come back.

making certain complete safety

So what can small groups do? For starters: get a VPN. VPN stands for virtual inner most network, and it’s a solution that many organizations use to support lower the opportunity of a cyber attack. The network is encrypted and sometimes requires varied authentication methods, making it easier for remote laborers and employees in numerous branches to securely entry the purposes and programs they need to do their jobs.

It’s a great first layer of insurance plan. but with a purpose to be certain total security, small corporations need a safety plan in region so that you can protect that VPN in addition to make certain that each device carries a couple of layers of coverage. HP provides exactly that. The business knows that each pc resolution is a security resolution, and it equips every of your company’s gadgets with the equipment they should cease vulnerabilities from each perspective.

classes like HP bound start, HP sure get better, and HP sure click on stop malicious utility from spreading to a company’s contraptions and network, managing all competencies threats so a small enterprise can center of attention on building its enterprise. within the case of an attack like LoJax, HP certain birth would be in a position to live one step ahead of the game with the aid of detecting the attack before it might take place. LoJax gets in with the aid of attaching itself to the BIOS, which is the primary million strains of code that a tool runs before being turned on. HP certain delivery recognizes rootkits like LoJax at the BIOS stage, and then fully replaces the BIOS to ensure that LoJax doesn’t have a ride into the system.

The danger is real, but hope isn’t misplaced. With the appropriate figuring out of their personal vulnerabilities and an HP cyber safety plan in location, small company owners could make commercial enterprise-level protection decisions if you want to flip them from a hacker’s best goal to a hacker’s useless conclusion.

be trained extra at hp.com

Futurism enthusiasts: To create this content, a non-editorial team labored with HP, who sponsored this post. They aid us hold the lights on. This post doesn't always replicate the views or the endorsement of the Futurism.com editorial body of workers.


assist! My Isolator Is Taking Too lengthy To Degas — What may still I Do? | killexams.com Real Questions and Pass4sure dumps

by way of Herman Bozenhardt and Erich Bozenhardt

likely probably the most huge developments in sterilization and aseptic practices in the pharmaceutical enterprise is that of vaporized hydrogen peroxide (VHP) as a contact or “cold” sterilizing agent. the use of VHP in contained environments has allowed us to decontaminate working areas, machine, and substances and has resulted in the development of the respectable isolator. This application has ended in many years of success and supplied assurance that aseptic dealing with and filling operations are microbial-free. in this article we will focal point on filling isolator programs and equipment. considering the use of this expertise started, we have been singularly concentrated on sterility with the aid of maximizing injection quotes and saturation stages and assuring media fills are a hit in qualification checking out.

a different evolution of this know-how is the size, complexity, and variety of isolators the VHP has been applied to. at the start isolators have been “bins” or “cylinders” with lots of injection nozzles and an easy HEPA exhaust scheme. these days the isolators have increased in measurement so much that the height and width require extra nozzles and more advantageous attain throughout the fill deck. additionally, we've isolators with seven to 13 sections, with distinctive correct angles to adjoining sections where each and every area can also be 10 to 20 meters lengthy, and with several auxiliary docking sections. In all these circumstances we compensate with extra VHP injection as a result of we deserve to make sure a hit media fills.

New truth

As this enlargement of VHP use and isolator complexity evolves, we've driven ourselves directly into the newest classification of drug items and have “hit the wall.” we have discovered many new therapies which are labeled as “ultra-low” potency items (in the microgram and nanogram per ml), biologicals that are sensitive to VHP (and any oxidizer within the vapor phase) and incompatible items (in some instances there become no prior checking out or consideration for VHP interaction). In these instances, the residual VHP vapor within the isolator interacts with the open vial of liquid between the dosing nozzles and the capping station and oxidizes the API in the solution. This turns into a more severe problem with lyophilized items, the place the liquid is uncovered from the dosing needle in the course of the fluted stopper and into the lyophilizer itself. This has had an important have an impact on on new installations and CMOs as they acquire new enterprise of their legacy aseptic filling isolators. In some circumstances, the residual VHP has attenuated product by 10 to 15 % efficiency in average fills and up to 25 p.c degradation in lyophilized creation.

For the CMO, this frequently violates lots of their normal practices and crushes their high self assurance in their VHP cycle and media fill, and that they must face the truth of many isolator alterations and doubtlessly decreasing their VHP cycles. This additionally exposes a flaw: that some isolator VHP residual levels have in no way been understood, challenged, or questioned. in lots of situations with low-efficiency items or biologicals, we deserve to set the residual degree from the one hundred +/- ppm tiers to as low as 10 ppb. Some may ask yourself if this conceivable, and the reply is absolutely. although, some practices, gadget, and strategies need to trade, and for the stronger. we will now discover the method of degassing and doing away with residual VHP by way of aeration from the a variety of business isolators.

incorrect “options”

As we've dealt with these issues on a global degree, we now have discovered individuals who think outside the container and strategy the problem with greater complications:

  • “Let’s simply fill with a much better awareness.” This method of concentrating the product and letting the degradation take its toll is foolish. that might require a change to the submission files and exhibit a lack of examine of the compatibility of VHP with the product. furthermore, the oxidation of the API produces a compound, and now we would have introduced a new impurity. The FDA could be very attracted to this.
  • “Let’s raise the fill extent.” here is equally inappropriate, as the equal issues as above will occur, with a degraded efficiency and more quantity. The residual generated should be wondered, as will the manufacturing submission.
  • “Let’s just HEPA-ventilate until we get a very good reading.” while here is a compliant solution, it outcomes in a degassing that may take days or even weeks to accomplish. This may have a devastating have an impact on on product birth and plant means. by using excessive sparkling air ventilation, we are also stretching the service life of the internal HEPA filters while increasing the operating can charge geometrically. The air coping with unit (AHU) and cooling charges will drive up the vigor load.
  • “Let’s see if we are able to cut back on the validated VHP cycle and notice what happens.” this is a risky approach, for the reason that any exchange to the procedure would require a metamorphosis control and re-execution of media fills. without any engineering alterations, this is a bet at choicest.
  • The most beneficial solution

  • Recognizing VHP and its residual exist and could have an impact on the product is the first step in averting a problem. it is crucial to make use of the product and run VHP compatibility checks, challenges, and fill trials to collect facts and bear in mind the impact earlier than the fill is tech-transferred into the isolator web site/atmosphere. This should be performed in a pilot plant or, at worst, in a “development” mode with the isolator. this may enable statistics to be gathered, a judgement reached on have an effect on, and a rational design accomplished earlier than the fill tech-switch. this may give parameters for the residual ppm or ppb of the VHP, the degassing time, and any container-based modifications crucial (alternatives below). The careful design of the cycles (each VHP and degassing/aeration) and figuring out the VHP stages, temperatures, relative humidity, speed of aeration, air exchange fee (ACR) in the isolator, and element HP values by means of instrumentation is helpful. A virtual 3D model of the residual VHP frequently enables pinpointing the important thing VHP supply. This proactive method saves time and funds and allows for for the selection of a superior economic answer, which is a tradeoff of engineering technologies and degassing time.
  • container-primarily based options

  • one of the crucial regular and omitted problems is liquid pooling in certain areas above and below the fill deck. although, you're going to under no circumstances see this at the short manufacturing unit acceptance verify  (fat), however after a couple of in residence VHP runs a gasket, opening, port, or other aspect allows for moisture collection and it will contain dissolved HP. A careful study of the unit right through and at once after the VHP routine (of the machine, the deck, and below the deck) is usually step one in troubleshooting.
  • The next key area to look for is the elimination of polymer-based materials inner the isolator, certainly all platinum-cured silicon tubing. All polymer-primarily based cloth absorbs VHP throughout the cycle and slowly expresses it, however at a rate which will proceed to thwart the degassing. Some polymers are tremendously worse than others. The focus is to maximise stainless steel and use Teflon, polyethylene, and polypropylene best when required. probably the most detrimental and absorptive polymers are Delrin, polyurethanes, polyamides, polysulfones, and polystyrenes. You have to appear cautiously on the substances of building of your tubing, filters, seals, gaskets, and other polymer-primarily based add-ons. This additionally comprises the HEPA filters and mounting techniques. The person must remember the substances within the HEPA filter frames above all. In some CMOs, the isolators have HEPA filters on the return ducts/plenums. here's to prevent pass-infection; these filters (polymers) can also be eliminated if the product profile does not contain cytotoxics, robust compounds, or energetic biologics.
  • together with the polymer-based investigation should still be a cautious evaluate of the gloves, glove ports, and different interface seals. First verify for materials of building, and then be sure the gloves are all prolonged (fingers don't seem to be collectively) and don't have any obscured surfaces or cowl a port of one other polymer seal. Polymer surfaces trapped in opposition t one a further can additionally trap and retain VHP and intervene with standard aeration/degassing.
  • The isolators have AHUs that handle the air circulating from the isolator deck-degree returns. These AHUs have cooling coils to manage the temperature in the isolator section, which is essentially a cooling characteristic. The coils are fed chilled plant water internally to cool the air drawn by way of the blowers, which pushes the air through the HEPAs returned to the isolator for downward coverage of the vials. due to the fact that the AHUs are an immense working-charge contributor, they have been optimized for charge reductions and minimum circulation and never for degassing. Rethinking design and orientation are essential to provider modern product strains.
  • The coils are cold during normal operations and stay so all through the VHP cycle (despite the fact that the chilled water give valve is shut). The coils are an awesome place for water to condense, bring together, and preserve HP (dissolved hydrogen peroxide). once pooled during this area, it may take days to evaporate the water and the HP. here's one of the most typical difficulty areas.

    to ensure that this area not to pool liquid and turn into the HP reservoir for the unit, the handle equipment need to condition the isolator coils for a put up-batch/pre-VHP cycle. In some designs, there isn't any temperature manage unit (TCU) for heating and the valves control the chilled water going right into a recycle mode and slowly let the heat from the isolator and machinery warm the air movement. In a extra modern design (see AHU scheme), a TCU provides either plant scorching water or electrically heated water to bring up the temperature of the coils and the internals of the isolator.

    during this case, throughout the average isolator-filling scheme the programmable common sense controller (PLC) controlling the isolator AHU has a calming water (CW) set aspect CT that has valve VB controlling the chilled water circulating (valves VA and VD are closed, and VC is open 100%). To prepare for the VHP cycle, the PLC needs to increase the temperature of the coils above the condensing temperature of the VHP (be aware the coils and blower are upstream of the HEPA filters). This temperature should be 35 levels Celsius and will be attained rapidly. this can require a TCU to return online with its pump, shut VB and VC and open VD 100 percent, and control the temperature by way of actuating valve VA and inserting the TCU mode to warmth.

    The subsequent step is to run the isolator VHP cycle, realizing the coils are heated. once the VHP cycle is completed, the degassing may still reinitiate the coil-heating cycle and force the temperature of the entire isolator up and speed up the degassing, making bound any residual VHP and water/HP evaporates quickly.

    As in all of these styles of applications, an in depth time-based analysis of the PLC cycle is crucial, as an inadvertent activation of a chilled water line, a incorrect set point for a short duration of time, or a valve sequenced incorrectly may well be the root explanation for the AHU issues.

  • probably the most worthwhile investments in an isolator is the VHP/HP absorbing catalyst that may also be put in within the AHU. These catalyst techniques are ultimate to instantly soak up the VHP from the isolator throughout their recirculation mode. the important thing to effectivity of the isolator is its means to recirculate air and best bleed in “make-up” air. The catalyst must be placed by means of catalyst specialists in coordination with the isolator company for the correct vicinity, air speed checks, PLC sequence of when to interact the catalyst, and general commissioning of the unit. This permits the isolator to run in its most advantageous (re-circulation) mode and absorb/wreck VHP. here is top of the line if it is completed within the design of device. If here's completed as a retrofit, the isolator can be taken out of service and may be re-commissioned, and re-execution of the media fills would be required.
  • Fan circulation of clean air and recirculated air is an extra consideration. As mentioned above, the isolator usually runs in the mode of recirculation and decreased vigor consumption. The blowers are frequently variable frequency drives (VFDs), and the PLC controlling them may not be programmed effectively for optimum exhaust. The blower-controlling a part of the PLC must insure the lovers are in sync, no longer inhibited via the vigour administration scheme, and capable of generate an exhaust profile that flushes the entire isolator part. it is essential to understand the fluid dynamics in the isolator, no longer best throughout the VHP cycle, however the degassing cycle as well. These are diverse cycles with distinctive goals, and while dwell time and distribution are key for the VHP injection and downward speed of .36 to .forty five m/s are key for filling, they do not necessarily work for the degassing/rapid air egress. The most effective approach to assure ourselves the isolator is being degassed, now not leaving “useless zones” or growing vortices that recirculate the air or another anomaly, is to perform a computational fluid dynamic (CFD) mannequin of the isolator. we have too many cases where insufficient air turnover and useless zones are led to via gadget place, filling deck peak, fan region, and areas not evacuated cleanly. this can also be real of the many “docking station” options. in the end, your realizing of the air velocities, aeration profile, and delta drive throughout constrictions is vital.
  • An alternative that is awfully valuable, and additionally expensive, is the retrofitting of the filling system with a nitrogen “blow” into the vials, nitrogen backfill at dispense, and nitrogen blanket up to the stoppering zone. This does not increase the degassing; despite the fact, it protects the product as much as a stage. If carried out at the isolator design, the incremental cost is smartly contained. despite the fact, if executed as a retrofit, it may can charge a number of million dollars and delay operational use by a year. a further consideration is that counting on a nitrogen headspace to protect the product will have an impact on the regulatory submitting, as a new ingredient has been introduced.
  • In summary, troubleshooting of a degassing/aeration issue of an isolator requires quite a lot of time, evaluation, and persistence. To cut back a VHP stage in an isolator from 50 ppm to 50 ppb may take months. that's why nitrogen backfilling plus isolator CFD analysis, polymer elimination, and cautious temperature handle can suggest the change in over a year of startup time and better ability throughput.

    about the Authors:

    Herman Bozenhardt has 42 years of event in pharmaceutical, biotechnology, and clinical machine manufacturing, engineering, and compliance. he is a recognized knowledgeable in aseptic filling amenities and techniques and has extensive event within the manufacture of therapeutic biologicals and vaccines. His latest consulting work makes a speciality of the areas of aseptic programs, biological manufacturing, and automation/computer systems. He has a B.S. in chemical engineering and an M.S. in gadget engineering, each from the Polytechnic Institute of Brooklyn. that you would be able to reach him at hermanbozenhardt@gmail.com or join with him on LinkedIn.

    Erich Bozenhardt is the technique supervisor for integrated task features’ procedure neighborhood in Raleigh, NC. He has 12 years of experience within the biotechnology and aseptic processing business and has led a few biological manufacturing tasks, together with mobilephone cures, mammalian phone lifestyle, and novel delivery methods. He has a B.S. in chemical engineering and an MBA, both from the school of Delaware. that you can attain him at ebozenhardt@ipsdb.com or connect with him on LinkedIn.

    Isolator image courtesy of ProSys


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    Vince Clarke Intros Imaginator Eurorack Pattern Generator | killexams.com real questions and Pass4sure dumps

    Synth-pop pioneer Vince Clarke, in collaboration with Analogue Solutions, has announced the release of the Imaginator VCX-378 – a new module that he describes as ‘a practical writing tool’ that can generate musical patterns, based on user-controllable variables.

    Housed in a 36 HP-width Eurorack module, the Imaginator VCX-378 has a front facia-located one-octave ‘keyboard’ — with each ‘note’ having a push button and associated LED — alongside two Quantize sections, Octavize and Transpose sections, a Velocity treatment, plus internal (Sequencer) and external (Midi/Clock) clocking, as well as a full MIDI interface.

    In most cases, users will want to sync to their sequencing software by sending the Imaginator VCX-378 a MIDI note clock. The Imaginator VCX-378 references these notes and uses this information to clock the musical patterns it produces. The resulting patterns can be used ton control soft synths or hardware synths.

    Here’s an intro to the module from Vince Clarke himself:

    “For full operation of the unit, I suggest you make yourself a nice cup of tea and watch the user video,” says Clarke. “Thanks for watching… and now I must get back to my day job.”

    Here’s the video manual:

    The Clarke Imaginator is available now, for £349, from the Analogue Solutions site.


    UniPrint Announces VPQ Connector for Multifunction Printers for Xerox and other leading printer vendors | killexams.com real questions and Pass4sure dumps

    UniPrint (www.uniprint.net), the world leader in printing virtualization, today announced the availability of VPQ Connector, a new software product that enables the seamless integration of the UniPrint Infinity secure pull print solution with multifunction printers (MFP’s) from Samsung, Xerox and HP. VPQ Connector allows users to release print jobs securely and on-demand to any printer without an additional investment in hardware. Companies can also access secure print release capabilities from UniPrint’s Virtual Print Queue (VPQ).

    VPQ Connector allows seamless interoperability and product familiarity with the single intuitive interface on an MFP panel. Organizations can deploy secure pull printing in a multi-vendor printer infrastructure and benefit from many features found directly on the multifunction device. Users can release print jobs anywhere within an organization’s printing environment while saving money, reducing energy expenditures and improving security.

    Arron Fu, VP of Software Development, UniPrint comments, “As businesses seek consolidation and cost savings in their printing infrastructure, MFP’s have become an essential part of the equation. Our solution is compatible with hardware from manufacturers such as Xerox, Samsung and HP. Not only do these devices provide fast and efficient printing, they also combine copying, scanning and faxing all in one unit. Companies in verticals where security is paramount – such as financial services, government and healthcare – can benefit greatly by adding VPQ Connector to their print environment.”

    “UniPrint has been a pioneer in providing enterprise printing solutions for years,” comments Daniel Cheng, President of Process Fusion Inc. “Starting with the development of the industry’s first printer-vendor independent managed print solution for any computing environment through to the latest release of UniPrint Infinity. As a system integration partner of Xerox, we understand that innovations like the VPQ Connector are integral to improving the efficiency of MFP’s and advancing the industry as a whole.”

    For further information on UniPrint Infinity or VPQ Connector, visit www.uniprint.net or e-mail sales@uniprint.net.

    About UniPrint:

    UniPrint, a division of ACCEO Solutions Inc. (www.acceo.com), is the recognized leader in printing virtualization. The newest solution in UniPrint’s patented, award-winning product line, UniPrint Infinity is the industry’s first truly secure enterprise-wide solution for any computing environment. Enabling anywhere, anytime, any device secure pull printing, UniPrint Infinity comes with a proven ROI through its statistics module, print document archiving functionality and Virtual Print Queue technology. UniPrint Infinity replaces all manufacturer printer drivers with a single PDF generator to promote faster, more efficient printing, helping organizations to improve both productivity and return on investments. For additional information on UniPrint, please visit www.uniprint.net.

    UniPrint Infinity is the trademark of ACCEO Solutions Inc. All other trademarks and registered trademarks are properties of their respective owners.

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    In a world of Energy Mainframes, our “PC, meet the Internet” moment is very close. | killexams.com real questions and Pass4sure dumps

    Welcome back. In part 1, we covered a general framework for how to make sense of paradigm shifts in the world. This section, although it covers its own topic, can be read as a continuation of part 3 (Our shift from a driver-centric to a car-centric culture).

    Welcome to the final part of this series, which is going to cover a lot of topics: energy, the Internet of Things, cars, and more. This will be the longest and furthest-reaching post of this series, so I humbly ask for your patience as we work through what’s going on. I promise it’ll be worthwhile in the end.

    Just as in last post, I’d like to open with a broad question to anchor the discussion. Imagine you could go back in time to the mid 80s, as early online services like Prodigy and Q-Link were in their infancy and personal computers were in their last isolated years of being overshadowed by the big Wang and DEC machines. Imagine you could share a message with anyone who’d listen about what is about to happen: the only rules are you can only say one sentence, and you can’t mention any companies by name. What would you say? Here’s what I would say: When personal computers come online, the world will change forever. We may be close to a similar moment for energy.

    Last post, we talked about the on-demand and autonomous aspects of transportation, which are quite fun to think about as they contained two of our paradigm shift steps in series with one another. Electrification is also going to be difficult to work through, but in a different way: because there are two steps, going on in parallel. Fortunately, if we take our time and untangle the various threads in question, we can actually see a clear possibility of what will happen.

    In order to get there, we must start in the past, prior to when we harnessed electricity. During the Industrial revolution, energy was a very scarce resource. We’d figured out how to harness kinetic energy (through water power) and chemical energy (by burning fossil fuels), but with a strong limitation: you had to consume that energy right then and right there. “Live” joules of energy were scarce — if you had one on hand, right now, you could use it. But otherwise, you were out of luck.

    Around the turn of the 20th century, we developed a new capability: to transform that energy into electric current which could flow through wires. This unlocked a very important new possibility: to consume energy elsewhere from the power source. Then we took a step further: we organized those wires into an electrical grid, enabling many different power plants to serve a distributed group of customers. Consumers gained a second freedom — to use energy at the time of our choosing, as any one customer was no longer dependent on a specific plant being online at any given moment. These two new powers — freedom of place and freedom of time to consume electricity, so long as you were plugged into the grid — dramatically increased what could be done with a joule of energy. Funny enough, we don’t actually have a succinct single word to describe this combined effect: the ability to consume a joule of energy at the time and place of your choosing. So I’m going to abbreviate that concept as “dxdt” for this argument, which you can think of as a single quantity representing “place-shift-time-shift”.

    The following point is important to understand: from any user’s point of view, you can’t really separate the dx (place) and the dt (time) components of dxdt. So long as you are connected to the grid, it does not matter where or when you turn on your light switch: it will go on. This is why you sometimes hear people well versed in energy say “The grid is a battery.” It’s not literally a battery- but to any observer, it acts like one. For anyone putting energy into the grid, you don’t have to worry about who’s consuming it when or where; for anyone pulling energy out of the grid, you don’t have to worry about who produced it, when or where. The lights go on, and that’s that.

    How is this the case? Because grid operators do a lot of hard work to make sure the system is always in balance. The grid is like a bathtub, always filled exactly to the brim, no more no less. Pulling off this balancing act is no small task: it requires constantly monitoring your load, maintaining transmission lines, bringing new plants off and online, and keeping extra capacity in reserve. This is all expensive — about 50 cents on every dollar of our electricity bill go collectively to these various dxdt functions. But we pay this money for a good reason: were there no dxdt, we’d be brought back a century: each of our homes would have to be directly hooked up to a local power source, and our ability to turn on the lights would be subject to that plant being online here and now. Hence, dxdt is a very valuable thing.

    All together, dxdt accounts for more than half of our energy bill. (PJM / Pennsylvania, 2013–2014)

    This brings us to our next important point: the grand bargain of energy in the 20th century. As we’ve said before, the grand bargains represent those great compromises between scarce resources, around which an industry sits at equilibrium. In energy, what has it been for the last hundred years?

    The bargain has been this: in exchange for affordable dxdt, we accept a lack of choice for how we get our energy. If you’re in San Francisco you only have one choice of electricity provider: Pacific Gas & Electric. The public utility commission grants them a sanctioned monopoly, in exchange for having a cap placed on what they’re allowed to charge you as a utility for providing you with dxdt. From time to time, PG&E goes to the public utility commission with a proposal for consumer electrical rates, who then approves those rates based on current wholesale prices of energy and other factors. In some deregulated regions, consumers can select among multiple providers of electricity, at least offering some choice, but upon making their selection still pay monotonously through a meter for a stream of commodity electrons. In essence, the regulated component of the rate we pay is not actually for the electricity itself (wholesale power prices are market rate and highly competitive) but rather for the dxdt component.

    This bargain turned out to be highly productive. It put the right incentives in place to electrify our cities and towns, to build high-capacity, reliable mainframe plants and to make sure that the lights always turned on, cheaply. But what now? As the 21st century opens, we’re presented to a world of new possibilities but also urgent resource and climate related problems to address. Technology will certainly help determine what happens.

    How can we make sense of what’s going on? Let’s turn to our idea of technology increasing access to scarce resources. With dxdt and choice as the scarce resources of the 20th century energy bargain, we can categorize energy technology breakthroughs in terms of access to these two entities.

    In one corner, we have new technologies that increase our access to choice of which joule of energy we consume. Renewable energy like solar gives you one kind of choice: if the sun is shining, a solar panel owner can get momentary access to zero-emissions, zero-marginal cost energy. Same for wind. Consumer-sited energy is another: if you have a generator of some kind on-site, even a simple 3 hp Honda gas generator, you can choose to use that energy at your discretion. Rooftop PV systems and hot water heaters are other examples. Smart appliances and systems that can turn on and off intelligently in order to select the cheapest and best watts have arrived as well. And at a far more granular level, the imminent arrival of distributed IoT systems will empower formerly static components to become actors that make choices of their own — we’ll come back to this later. The impact of all of this technology points in the same direction — away from the old grand bargain where you only had one option (the steady grid) towards a world where a consumer might have multiple options for how you source and consume your energy.

    Our collective response? We’re very excited about this increased access to choice, and we’ve heard a lot about how we need to build a “Smart Grid” to take advantage of these new options. There’s just one problem: it’s proved quite challenging to get anyone to agree on how this should work and who should pay for it. In the meantime, increased access to choice without improving our ability to shift energy in place and time (dxdt) leads to a lot of fights between stakeholders. What happens when the sun is shining but no one needs the energy? What about the opposite? Is Net Metering fair? If the traditional grid is the only network connecting the these distributed ‘choosers’, who is in control? Without a corresponding increase in dxdt, increased access to choice leads to conflict and no clear business model.

    Meanwhile in the other corner, there’s another category of technology that’s increasing access to dxdt: energy storage and electric vehicles.

    Energy storage is very clearly a form of dxdt. It lets you draw in energy at one time and consume it at another (and possibly a different place as well). If there is high supply or demand for energy at time A and low supply or demand at time B, energy storage lets you bridge that gap and resolve the difference. Electric cars go a step further: they quite literally are a battery on wheels that can charge up at at different locations, use that energy gradually as it drives, and even discharge its energy should the situation call for it. (Gasoline, which powers most vehicles on the road today, is also a highly effective form of dxdt. It’s dense, portable, and standardized.)

    It’s worth repeating this point, because it’ll be important later: electric vehicles are a form of dxdt, just like the grid. One vehicle may not be able to store, move or consume very much energy — but a whole fleet of them develop a capacity and an agenda of their own.

    In the meantime, a lot of people have gotten excited about energy storage — specifically, the prospect of arbitraging energy from the grid, buying at off-peak hours and selling at peak prices to make money. This sounds like a good gig, but it actually isn’t: the economics don’t work out. How come? Because without choice — without having many options from which we can get energy — it’s very hard to make money in arbitrage. We can choose to buy power from the grid at 3 am vs. 3 pm, but that’s pretty much it. Without a corresponding increase in choice of where our energy comes from, increased dxdt is mostly underwhelming and yields no clearly profitable business model.

    But what about when we take a step back and see that both of these transformations are happening at the same time?

    No one really knows what’s going to happen. But I do believe we can say the following:

    -The grand energy bargain in the 20th century is predicated on dxdt and choice as scarce resources around which the market is organized.

    -Increasing access to choice of where, when and how we get our energy makes dxdt more necessary and valuable.

    -Increasing access to dxdt, conversely, makes having access to different choices of energy at different times and places more valuable.

    -Consumer sited energy, renewables, smart consumption, batteries, EVs and other kinds of technology are currently increasing access to both choice and dxdt, at the same time.

    We are very close to a moment not unlike when early PCs and the early Internet, which initially evolved separately, finally found each other.

    This should have two consequences in the near-ish future:

  • A virtuous cycle, not unlike Moore’s Law, whereby more choice enables more dxdt and vice versa in a self-reinforcing loop.
  • Dxdt and energy choice will no longer be the central scarce resources of energy. Something new will take their place. Much as the grid turned power plants into fungible abstractions 100 years ago, so will happen to the existing grid in the next few decades.
  • What might this actually look like in real life? The combined Tesla + Solar City, or at least the idea behind the merger in principle, can help us out as a conceptual starting point. Solar City is a company that increases access to choice through their distributed, consumer-sited network of rooftop PV panels. Tesla, on the other hand, increases access to dxdt by deploying large numbers of electric vehicles, charging stations and Power Walls. I’m not saying Tesla + Solar City will surely emerge as winners, although we’ll revist them later. What I mean here is the idea of Solar + EVs and its potential can best be understood as radically increased access to choice and dxdt, in tandem — and that’s what makes it exciting. When we talk about Tesla / Solar City operating an “energy network” between its solar rooftops, cars and charging stations, this is what we’re talking about.

    Back to current reality — if access to choice is increasing, and access to dxdt is increasing, what does that mean? What will be scarce?

    Here’s my best guess.

    The physical electrical grid as we understand it will still exist, and will continue to be operated by the public utilities we’re familiar with. Most of our energy will still come from large, centralized sources — much of that from utility-scale natural gas, and eventually wind and solar. (Just as much of our computing today is still done in centralized locations. Mainframes persisted for a long time, and have since been superseded by giant server farms powering the cloud). There’s nothing “off-grid” about this — the plants and wires we know today will still very much exist. Surrounding this centralized backbone of energy production and transmission we will also have a highly distributed network of small-scale production, storage and transmission. This network will have many components: rooftop solar panels, batteries that can charge and discharge, electric vehicles, and their charging networks.

    You can think of the relationship between the central trunk and the distributed peripheral branches as somewhat akin to that between Uber and a subway system. The subway system has a much greater absolute capacity along its trunk lines, and can move a very high volume very efficiently within those parameters. Surrounding this trunk, we have Uber — a highly diffuse, locally effective way to bring our electron passengers to and from the central lines, absorbing capacity variation, and even directly competing in situations where the economics permit. The majority of electrons will still take the subway for the majority of their journeys — but whoever can fulfill the many different kinds of “last miles” will probably have the more attractive income proposition.

    The most significant change will be that this distributed network will effectively straddle and ultimately replace the Meter: the literal counter that calculates our energy payments, and also the dividing line between the two environments we currently call “In front of the meter” (utility-sited) and “Behind the meter” (consumer-sited). With the rise of consumer-cited generation and storage, particularly of the dispatchable kind (where utilities today can deploy and rely on these assets as if they were “Virtual power plants”), the line between what is in front versus behind the meter is poised to become very blurry- and ultimately disappear. So what replaces it?

    The meter most likely gets replaced by an entirely new layer of energy where electricity can be stored, exchanged, and consumed. Almost like a distributed “Internet of energy” that is not controlled by any master coordinator but rather operates like a distributed commodity market. What will we find on this market? We’ll be dealing in one very basic commodity: electrons. But there will be a number of different ways that they might be handled. We will probably see the creation of a few simple derivative contracts that replace the monolithic counting of the meter and pay out based on some possible underliers:

    -The productivity of an energy-producing entity, such a solar panel, gas plant or nuclear plant

    -The money paid out by an energy-consuming entity, such as a building or a car

    -The money earned through arbitrage by an energy-storing entity, such as a battery or a car.

    This commodity market type layer is fundamentally made possible, and in fact inevitable, by the distributed Internet of Things. Once these underliers become agents of their own (as they will), two very natural scarce resources should emerge: information and trust. Just as the grand energy bargain of the 20th century stated, “In exchange for access to dxdt, you agree to restricted choice”, the grand energy bargain of the 21st century may state, “In order to participate in this ecosystem, you must demonstrate and commit to the required level of trust.”

    What does “the required level of trust” mean? Well, there are many different ways to participate in this market, each with their own requirements. If you’re a homeowner and all you want is for your lights to turn on — in other words, for the market to act like the electric meter we’re used to — then you need to provide a billing address, and maybe a credit history. If you’re a dynamic circuit breaker that needs access to the information held by an adjacent load balancer, you need to demonstrate the appropriate digital credential to be granted read or write permission. If you as an entity want to trade on this market, and use information that you have to try to make money, then that requires some higher level of trust. If you want to be a major player on the market — say, operate a fleet of electric vehicles that are constantly buying, storing, selling and consuming energy — that too requires many different and ongoing exchanges of information and trust. In time, some kind of regulation or self-policing will emerge, although it’s hard to say what at this point.

    Funny enough, if this comes to pass it will represent the final arrival of something we dreamed about in the 90s; one man in particular. That man was Jeff Skilling, and his dream was Enron. To be clear, let the record rightfully state that Enron deserves its final resting place in infamy. But nonetheless, you can’t help but think that Skilling was clearly ahead of his time. But the the lesson from history is clear: for this to actually work, it needs to be a distributed system like the Internet, and not a centralized model like Enron’s. I don’t think I need to explain why.

    So how does this actually come about? As ideal an endpoint as it may seem, this seems like a pretty major change from the way things work today. Where are the most effective wedges going to come from? Who will hold the information? And who will hold the trust?

    Well, let’s go back to part 3, where we talked about cars and other technological changes that increase access. Specifically, we talked about our ongoing shift from driver culture to car culture, the increased access to cars and drivers brought upon by the mobile phone (Uber), and the coming increased access to liquidity brought upon by autonomous vehicles and fleet programs. We asked the question, “What will cars want?” But we held off from commenting about the third major wave of change coming to vehicles — their electrification — because we were saving it for this post.

    As it turns out, electric vehicles are going to be the perfect wedge into our new energy paradigm for the following reasons:

  • They are a form of distributed dxdt, as we’ve discussed.
  • The cost of producing and operating an electric vehicle (or a fleet of them) is heavily subsidized by its other function: transport.
  • They are going to be productive entities that can want things — and will probably get them.
  • They will be significant energy consumers themselves, granting them leverage as dxdt entities.
  • And so, we now finally have the right lens to look at what Elon Musk is planning for Tesla.

    We already heard about Tesla Secret Master Plan Part 1: Use momentum from the Roadster to build the Model S, and then in turn the Model 3. Then we heard about Master Plan Part 2, which was largely about Tesla becoming a fleet manager of sorts (albeit with a bridge period where individual owners still own the cars). What’s going on in parallel, though, is quite a bit bigger in scope: Use cars as momentum to build Gigafactory production capacity and charging stations, and in turn own the charging standard and therefore dxdt. In the future, GM, Toyota or Apple could make the cars; Musk and Straubel mostly care about having them all have a Tesla-produced battery made in a Tesla Gigafactory running Tesla software and — most importantly — operate on the Tesla Charging Standard. That’s a real business.

    Remember back when we asserted that the logical future scarce resources in the new layer of energy were Information and Trust? If Musk can seize the charging standard for EVs, he has deep hooks into both of these resources. He can use them as a powerful wedge into creating and owning the valuable parts of the new energy commodity market — where Solar City makes lovely sense as an integrated product offering, I must add. That’s why, just like in Chapter 3 where we mentioned about how one of the real battles beneath the surface for Uber was for maps, the real battle here for Tesla isn’t just for the cars. It’s also for the charging standard, the stations, and for deep hooks into the underlying actors in the Internet of Things that participate in the new distributed energy marketplace. Tesla doesn’t want to end up as the Compaq of this transition — they’d much rather be the Intel (battery architecture), the Microsoft (driving / on demand productivity network), or the Cisco (charging standard). Or even more than one.

    One final point before we go. When we hear people talk about “The Smart Grid”, the massive and broadly supported Public-Private initiative to coordinate all of this distributed activity, what is that going to be? I’ll get in trouble for saying this, but when you hear “Smart Grid”, think Sun Microsystems. Hearing “Electric cars, solar rooftops, and dynamic pricing will all run on the Smart Grid” sounds an awful lot like the old tagline, “The Internet runs on Sun Microsystems.” Here’s the thing: that’s not wrong. The backbone and interconnecting glue of the Internet did run overwhelmingly on Sun’s SPARC architecture. (And still does, in a few places.) Sun was instrumental in making the Internet work. But in the long run, they did not win: they were caught between paradigms, not quite the old and not quite the new. If a mammoth, centralized Smart Grid is our Sun Microsystems, then the distributed energy layer I believe will emerge might initially look like Red Hat Linux. For anyone looking for the next layer, that’s where I’d start my search.

    In summary, all I can say is this: it’s going to be wild. We’re very close to our “PC, meet the Internet” moment for energy. When PCs came online, the world changed forever — and so it may be with our next layer of distributed energy. So many things are coming together: cheap renewable energy driven by the falling costs of solar and wind, an onset of highly subsidized energy storage inside of cars, the changing nature of the ownership of cars itself, and the emerging IoT glue that’s going to bind it all together. No one knows what’s going to happen. And we can’t wait.

    Thanks for reading. If you’ve enjoyed this series, please share with anyone who might be interested. We’d also love if you subscribed to Snippets, our weekly newsletter from Social Capital (curated by me) featuring our current observations, links to what we’re reading, and news from the great companies we work with.



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    HR [4 Certification Exam(s) ]
    HRCI [1 Certification Exam(s) ]
    Huawei [21 Certification Exam(s) ]
    Hyperion [10 Certification Exam(s) ]
    IAAP [1 Certification Exam(s) ]
    IAHCSMM [1 Certification Exam(s) ]
    IBM [1530 Certification Exam(s) ]
    IBQH [1 Certification Exam(s) ]
    ICAI [1 Certification Exam(s) ]
    ICDL [6 Certification Exam(s) ]
    IEEE [1 Certification Exam(s) ]
    IELTS [1 Certification Exam(s) ]
    IFPUG [1 Certification Exam(s) ]
    IIA [3 Certification Exam(s) ]
    IIBA [2 Certification Exam(s) ]
    IISFA [1 Certification Exam(s) ]
    Intel [2 Certification Exam(s) ]
    IQN [1 Certification Exam(s) ]
    IRS [1 Certification Exam(s) ]
    ISA [1 Certification Exam(s) ]
    ISACA [4 Certification Exam(s) ]
    ISC2 [6 Certification Exam(s) ]
    ISEB [24 Certification Exam(s) ]
    Isilon [4 Certification Exam(s) ]
    ISM [6 Certification Exam(s) ]
    iSQI [7 Certification Exam(s) ]
    ITEC [1 Certification Exam(s) ]
    Juniper [63 Certification Exam(s) ]
    LEED [1 Certification Exam(s) ]
    Legato [5 Certification Exam(s) ]
    Liferay [1 Certification Exam(s) ]
    Logical-Operations [1 Certification Exam(s) ]
    Lotus [66 Certification Exam(s) ]
    LPI [24 Certification Exam(s) ]
    LSI [3 Certification Exam(s) ]
    Magento [3 Certification Exam(s) ]
    Maintenance [2 Certification Exam(s) ]
    McAfee [8 Certification Exam(s) ]
    McData [3 Certification Exam(s) ]
    Medical [69 Certification Exam(s) ]
    Microsoft [368 Certification Exam(s) ]
    Mile2 [2 Certification Exam(s) ]
    Military [1 Certification Exam(s) ]
    Misc [1 Certification Exam(s) ]
    Motorola [7 Certification Exam(s) ]
    mySQL [4 Certification Exam(s) ]
    NBSTSA [1 Certification Exam(s) ]
    NCEES [2 Certification Exam(s) ]
    NCIDQ [1 Certification Exam(s) ]
    NCLEX [2 Certification Exam(s) ]
    Network-General [12 Certification Exam(s) ]
    NetworkAppliance [36 Certification Exam(s) ]
    NI [1 Certification Exam(s) ]
    NIELIT [1 Certification Exam(s) ]
    Nokia [6 Certification Exam(s) ]
    Nortel [130 Certification Exam(s) ]
    Novell [37 Certification Exam(s) ]
    OMG [10 Certification Exam(s) ]
    Oracle [269 Certification Exam(s) ]
    P&C [2 Certification Exam(s) ]
    Palo-Alto [4 Certification Exam(s) ]
    PARCC [1 Certification Exam(s) ]
    PayPal [1 Certification Exam(s) ]
    Pegasystems [11 Certification Exam(s) ]
    PEOPLECERT [4 Certification Exam(s) ]
    PMI [15 Certification Exam(s) ]
    Polycom [2 Certification Exam(s) ]
    PostgreSQL-CE [1 Certification Exam(s) ]
    Prince2 [6 Certification Exam(s) ]
    PRMIA [1 Certification Exam(s) ]
    PsychCorp [1 Certification Exam(s) ]
    PTCB [2 Certification Exam(s) ]
    QAI [1 Certification Exam(s) ]
    QlikView [1 Certification Exam(s) ]
    Quality-Assurance [7 Certification Exam(s) ]
    RACC [1 Certification Exam(s) ]
    Real-Estate [1 Certification Exam(s) ]
    RedHat [8 Certification Exam(s) ]
    RES [5 Certification Exam(s) ]
    Riverbed [8 Certification Exam(s) ]
    RSA [15 Certification Exam(s) ]
    Sair [8 Certification Exam(s) ]
    Salesforce [5 Certification Exam(s) ]
    SANS [1 Certification Exam(s) ]
    SAP [98 Certification Exam(s) ]
    SASInstitute [15 Certification Exam(s) ]
    SAT [1 Certification Exam(s) ]
    SCO [10 Certification Exam(s) ]
    SCP [6 Certification Exam(s) ]
    SDI [3 Certification Exam(s) ]
    See-Beyond [1 Certification Exam(s) ]
    Siemens [1 Certification Exam(s) ]
    Snia [7 Certification Exam(s) ]
    SOA [15 Certification Exam(s) ]
    Social-Work-Board [4 Certification Exam(s) ]
    SpringSource [1 Certification Exam(s) ]
    SUN [63 Certification Exam(s) ]
    SUSE [1 Certification Exam(s) ]
    Sybase [17 Certification Exam(s) ]
    Symantec [134 Certification Exam(s) ]
    Teacher-Certification [4 Certification Exam(s) ]
    The-Open-Group [8 Certification Exam(s) ]
    TIA [3 Certification Exam(s) ]
    Tibco [18 Certification Exam(s) ]
    Trainers [3 Certification Exam(s) ]
    Trend [1 Certification Exam(s) ]
    TruSecure [1 Certification Exam(s) ]
    USMLE [1 Certification Exam(s) ]
    VCE [6 Certification Exam(s) ]
    Veeam [2 Certification Exam(s) ]
    Veritas [33 Certification Exam(s) ]
    Vmware [58 Certification Exam(s) ]
    Wonderlic [2 Certification Exam(s) ]
    Worldatwork [2 Certification Exam(s) ]
    XML-Master [3 Certification Exam(s) ]
    Zend [6 Certification Exam(s) ]





    References :


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    HP HP0-M19 Exam (HP Virtual User Generator Software) Detailed Information



    References:


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