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M2010-719 Cloud and Smarter Infrastructure Storage Sales Mastery Test v5

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M2010-719 exam Dumps Source : Cloud and Smarter Infrastructure Storage Sales Mastery Test v5

Test Code : M2010-719
Test title : Cloud and Smarter Infrastructure Storage Sales Mastery Test v5
Vendor title : IBM
exam questions : 30 actual Questions

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IBM Cloud and Smarter Infrastructure

mobile, Cloud and mammoth facts hold Trolleys on track | actual Questions and Pass4sure dumps

Melbourne's one hundred-12 months-old transportation community uses mobile know-how, clouds and massive statistics to manipulate its trains and infrastructure extra with ease.

by using Samuel Greengard

operating the world's greatest trolley network is a frightening task. There are trains to carry on schedule, fix considerations to control, and a necessity to hold passengers advised about schedules and delays. as a result, Yarra Trams, Melbourne, Australia's iconic one hundred-12 months-historic network, is inserting statistics to drudgery in modern and creative approaches.

"know-how is now a crucial component in how they control and operate the transportation network," explains Neil Roberts, director of counsel and Communications know-how (ICT) for Yarra Trams.

The organization, the working title for KDR Victoria, oversees 487 trolleys running over 29 routes and 250 kilometers of double song. The trams latitude from three years historical to more than 70 years veteran and assist greater than 185 million trips annually. In all, the hard operates more than 91,000 items of device and averages about 31,500 carrier incidents per week. every piece of gear has between two and 50 records features.

"We ought to cope with different music circumstances, distinctive infrastructure and diverse machine, but, through it all, they must hold trams running on time table," Roberts explains.

Yarra Trams turned to IBM's Smarter Infrastructure technology to oversee operations and tie together a diverse array of gear and systems. The atmosphere contains IBM Maximo cell expertise and MobileFirst solutions, as well as a Maximo asset administration software operating in an interior cloud.

The device, which accommodates WiFi at music and station locations, collects about 3.7 gigabytes of data per day from lots of sensors embedded in tracks, trams and different device. As trams flow with the aid of, they transmit information it's immediately uploaded perquisite into a cloud. meanwhile, laborers enter records via cellular instruments the exercise of WiFi and cellular connections.

records is used in a pair of techniques, but the primary focus is on preventative upkeep and retaining trains operating on schedule. employees at Yarra Trams can slice via efficiency statistics, operational information, and suggestions in regards to the circumstance of gear in order to optimize renovation and repairs.

The organization additionally relies on facts to verify how and the status to superior deploy various kinds of trams. using this statistics-centric method, it has finished a provider genesis stage of ninety nine.13 percent and a punctuality degree of 82.63 %.

The expertise additionally gives functional advantages for passengers. as an instance, it delivers reside updates about tram arrival times and service delays via an internally developed free cell smartphone app known as tramTRACKER.

"A passenger can open the app and instantly examine what time trams will arrive at a selected station," Roberts explains. in consequence, "it's feasible to more suitable control your time and device forward about when to achieve at a station." The system can additionally generate alerts when mammoth delays hold vicinity or a tram breaks down.

building and operating a true-time transportation community has provided massive pervade discount rates and performance advantages to Yarra Trams. within the end, he says, the know-how has helped the company  transition into the twenty first century.

"we're in a position to free up and share counsel in modern ways, profit positive perception into improving operational efficiency and enable world-category carrier to passengers," Roberts reports.

Mendix natively integrates with IBM Cloud to open Watson AI access | actual Questions and Pass4sure dumps

Mendix has optimised its platform for IBM Cloud, including assist for Kubernetes and single signal-on onboarding.

Mendix now works with IBM’s Watson AI capabilities, enabling developers to hold skills of its low-code system to create AI-able applications and features. developers can integrate a number of capabilities into their creations, together with climate Channel content material, App identification, and App Launch on IBM Cloud.

built-in uphold for Kubernetes skill builders can exercise containerised infrastructure to construct their apps, too, whether a enterprise is deploying apps on private, public, or hybrid cloud capabilities. Mendix defined it will slash back prices associated with cloud app building, with automated scaling throughout environments.

All purposes groups built on IBM’s cloud service the usage of Mendix can live monitored from a single dashboard, making it a worthy deal less difficult to forward and hold diverse functions, the commerce claimed. 

“The goal of the Mendix-IBM Alliance is to location the convenience of drag-and-drop, low-code application development into the fingers of the commercial enterprise cloud market, leverage Watson’s AI capabilities for the largest variety of clients, and vastly precipitate up the time-to-value deployment of company innovation,” mentioned Erno Rorive, senior product manager at Mendix.

“the combination of the Mendix platform with IBM Cloud and Watson represents a golden triangle of commercial enterprise-ready solutions as a route to energy the next wave of sensible applications to focus of attention the vigour of AI on upright trade options.”

The final addition to Mendix on IBM Cloud platform is usher for built-in billing. as a result of Mendix is built-in into the IBM Cloud catalogue, businesses can live invoiced for utter their IBM functions together.

IBM units forth with a robust cybersecurity message | actual Questions and Pass4sure dumps

I just bought again from attending IBM believe in San Francisco. although it turned into a short commute throughout the nation, i used to live inundated with IBM’s vision, masking themes from A (i.e. synthetic intelligence) to Z (i.e. device Z) and everything in between.

despite the broad-ranging dialogue, IBM’s main focus of attention became on three areas: 1) hybrid cloud, 2) superior analytics, and 3) safety. as an example, IBM’s hybrid cloud discussion based on digital transformation and leaned closely on its crimson Hat acquisition, while superior analytics covered synthetic intelligence (AI), cognitive computing (Watson), neural networks, and so forth. To betray its capabilities in these areas, IBM paraded out valued clientele such as Geico, Hyundai credit score service provider, and Santander monetary institution, who're having a stake on IBM for game-altering digital transformation projects.

IBM's cybersecurity plans

As for cybersecurity, here are just a few of my take-aways about IBM's plans:

  • no longer surprisingly, IBM is all-in on cybersecurity functions, which now account for greater than 50 p.c of its cybersecurity earnings. according to ESG analysis (and a lot of different trade sources), cybersecurity features multiply will continue to outpace items because of the international cybersecurity odds shortage. (note: i'm an employee of ESG.) IBM is banking on this style by route of including group of workers, investing in backend systems and processes, and rolling out modern carrier offerings. as an instance, IBM is working with companions on a managed capabilities software the status local companions improvement from IBM’s international components, analytics, and threat intelligence. usual, IBM has a several random to separate itself from the pack and could develop into the de facto commerce cybersecurity capabilities chief.
  • Most cybersecurity professionals believe of IBM QRadar as a SIEM, competing with the likes of ArcSight, LogRhythm, and Splunk. whereas this standpoint is true, it minimizes its price. QRadar is truly a protection operations and analytics platform architecture (SOAPA). clients can exercise QRadar as a protection operations nexus, adding performance corresponding to network traffic analysis (NTA), vulnerability management (VM), and user habits analytics (UBA) to the core device. What’s extra, QRadar presents a number of helper purposes, reminiscent of DNS analytics, most of that are free. eventually, QRadar has heaps of consumers around the world. IBM has some drudgery forward perquisite here – it must benefit cybersecurity road cred through marketing QRadar as a SOAPA providing and international cybersecurity neighborhood, in preference to a undeniable veteran SIEM.
  • IBM is embracing protection “from the cloud.” for instance, QRadar on cloud (QROC) revenue grew over 20 %, demonstrating that clients want the cost of QRadar without the infrastructure baggage of on-premises collectors, databases, servers, and many others. IBM is besides poised to roll out its IBM safety related (ICS) platform in Q2. in step with its minimalist communications, IBM hasn’t trumpeted the ICS initiative, however in my humble opinion, it represents an immense alternate in path. For ICS, IBM rewrote its security functions as microservices to construct a foundation of cloud integration and scale. therefore, ICS functions will develop from discrete SaaS offerings to an integrated cloud-scale cybersecurity architecture over time. Oh, and ICS will comprehend lots of services alternatives for every thing from group of workers augmentation to outsourcing. ICS has the capabilities to live a huge deal for overwhelmed CISOs with global obligations and the need for huge cybersecurity scale.
  • Resilient is an enterprise-class protection operations platform. When IBM received Resilient techniques a few years ago, it gained a expertise leader but benign of ceded the bounce buzz to other carriers. here is a shame. Resilient may additionally require a slight greater drudgery than a few of its opponents, however I find that consumers are using Resilient to re-architect their protection operations methods and set up actual and measurable protection operations metrics. To me, here is the status safety operations systems must Go – past short automation and orchestration wins to anchoring protection system re-engineering.
  • four methods IBM can enrich its cybersecurity video game

    IBM’s protection portfolio is fairly solid, and the company looks to live extra energized than during the past. After attending IBM believe, I achieve own a few cybersecurity recommendations for individuals in Armonk and Cambridge, Massachusetts:

  • whereas IBM suppose has a powerful hybrid cloud theme, the IBM safety hybrid cloud yarn is quiet disjointed – an identity yarn here, an information security yarn there, and so forth. This ends up in IBM being outflanked via cloud-savvy safety startups. IBM needs a cohesive, tightly integrated product providing and messaging framework here.
  • IBM’s random management capabilities are solid however a bit hidden. in response to recent ESG analysis, there is a transforming into cyber possibility administration gap between what commerce executives want and what cybersecurity specialists can carry. Given its trade odds and relationships, IBM may quiet live doing greater within the cyber risk management area – at the product and features degree.
  • intently regarding #2, cybersecurity is basically a boardroom-degree hardship – mainly for habitual IBM purchasers. I locate that there's a disconnect between IBM’s company focus on digital transformation, trade solutions, and hybrid clouds and its cybersecurity go-to-market, which remains situated within the bits and bytes. once more, IBM is in a unique position to figure out a more correct-down strategy (i.e. from the commerce down to the expertise) and convey business-centric cybersecurity options to shoppers.
  • IBM spent thousands and thousands of bucks on a Watson for a cybersecurity advertising crusade, but few cybersecurity experts own a clue about what Watson for cybersecurity is. The matches in Armonk should quiet pump the promoting brakes and commit greater towards market schooling by route of working with skilled businesses akin to ISSA, ISC2, SANS, the Infosec Institute, and so on.
  • In usual, Armonk should keep in reason that the IBM brand is a marketing impediment when competing for mindshare with companies fancy CrowdStrike, FireEye, Palo Alto Networks, and so forth. for this reason, IBM security must drudgery more durable and smarter to pickup the notice out.

    Many thanks to IBM for hosting me in San Francisco this week. I’ll live back on the Moscone focus for RSA in the wink of an eye fixed. 

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    Cloud computing platforms: Migrating and testing | actual questions and Pass4sure dumps

    Solutions provider takeaway: Because the lumber to cloud computing platforms is happening quickly, solutions providers shouldn't waste time finding out how to dissect and test them. You will find this chapter excerpt is useful, because it offers information on what private clouds are and how they assist optimize your customers' hardware and other resources.

    The Process of poignant to the Clouds

    Figure 11.2 depicts the high-level process they can leverage to find the perquisite cloud computing category or categories and the perquisite cloud computing provider or providers to lumber the processes, services, and data they selected as worthy cloud computing candidates.

    Figure 11.2 This, the final step in their process, is utter about taking the process, service, and data requirements and mapping them to the perquisite technology.

    The core steps are as follows:

  • List candidate platforms.
  • Analyze and test candidate platforms.
  • Select target platforms.
  • Deploy to target platforms.
  • Let's stare at each step in more detail.

    List Candidate Platforms

    Listing candidate platforms is pretty simple considering the information presented earlier. You need to list any and utter cloud computing platforms that may live a apt for your to-be architecture. This requires that you understand what solutions are available, their categories, and what they do.

    There are no hard and rapid rules for defining a cloud computing solution. Thus, many software providers, whether they own a fair cloud computing solution or not, own a current to snort they do. For example, a few software vendors pretension that since their software can live downloaded over the Web to an on-premise computing system, they are an on-demand or cloud computing platform. They are not. Therefore, this step can live a bit about separating the wheat from the chaff, more so than just tossing together a list.

    We achieve not list cloud computing providers in this book, since that world changes monthly, with providers constantly being added, deleted, or combined. Mastery of SOA using cloud computing is as much about keeping up with the market space as it is about understanding what the vendors provide. In uphold of this process, you can visit the book's Web site to perceive an updated list of vendors and their categories.

    In choosing your candidates, you must respond two key questions:

  • What categories achieve you need?
  • Which cloud computing providers in these categories should they consider?
  • The categories you leverage depend on the final logical architecture and the requirements you identified through this process. They can invent some generalizations, though, including the fundamental layers you require and what to stare for within each layer (see figure 11.3):

    Figure 11.3 The core architecture requires you to find places for storage, data, operations, governance, security, services, and processes.

  • Processes
  • Services
  • Security
  • Governance
  • Management
  • Storage is the category that supports Part or utter of the architecture in storing, sharing, and managing file systems. You typically leverage storage-as-a-service for this, either from a cloud computing provider that only provides storage-as-a-service, or as Part of an infrastructure-as-a-service cloud computing provider.

    Things you need to stare out for here are capacity and performance. Capacity is your faculty to scale your storage needs to uphold your architecture. Performance is your faculty to lumber files to and from the cloud computing service at a precipitate that supports the business. Performance problems are the most likely issue here, so invent sure you achieve your testing.

    Database and database-as-a-service is the storage and retrieval of data using a platform-as-a-service, database-as-a-service, or infrastructure-as-a-service. Things you need to account here comprehend the faculty for the cloud-delivered database to uphold the features and functions you may require for your architecture, including the exercise of stored procedures and triggers, the duty of the API, adherence to standards, and performance.

    Within the case of infrastructure-as-a-service, cloud computing providers typically allow you to leverage title brand databases, such as Oracle or MySQL. However, the database-as-a-service providers typically exercise a homegrown rather than brand-name database, and they attend to live more proprietary in nature.

    Performance comes into play here as well. Most on-premise and traditional applications are data I/O bound, so you will find that similar performance problems may exist here. account the overhead of I/O on a multitenant platform and the latency that can occur when you transmit great amounts of data to and from your enterprise to the cloud computing provider and back again over the Internet. This could besides invent a case for placing the database closer to the processes and services that leverage that database, which is a core tenet of architecture when you account performance and the reliability of databases.

    Always Check on the Frequency of Outages

    For utter of this to work, reliability is a core requirement of your cloud computing provider. As you select cloud computing providers for your to-be architecture, invent sure to stare at the reliability of each provider. Typically, this means looking at the number of outages they experienced over a 2-year period. Also, stare at how they uphold failover and other recovery operations when events such as network, hardware, and software failures occur.

    While many of these outages invent the IT press, the lesser known cloud computing providers often Go unnoticed when outages occur. invent sure to summon a few references -- both those the vendor provides and perhaps a few they achieve not -- and inquire about the frequency of outages. Also, if the cloud computing provider is good, it should own a record of outages, why they occurred, and what they are doing to preclude such outages in the future.

    Processes can exist on process-as-a-service, platform-as-a-service, application-as-a-service, and infrastructure-as-a-service providers, for the most part. You need to account a few issues here.

    When using process-as-a-service providers, keep in reason that processes are utter they do. You must therefore bind the other architectural components (typically services and data) to those processes. The data and service assets exist either within on-premise systems or with other cloud computing providers, so you must invent sure that integration occurs and is reliable.

    Application-as-a-service providers typically achieve not provide a platform for you to create your own processes but allow you to leverage prebuilt processes on their platform. This is handy because, for instance, you need not create a custom fulfillment process for your commerce -- you can just leverage theirs. However, as with the process-as-a-service, the processes are isolated and thus must live linked back with other on-premise and cloud computing--delivered systems that are Part of the architecture.

    When considering infrastructure-as-a-service providers and platform-as-a-service providers, you are typically dealing with platforms that provide the "complete stack," including storage, database, processes, applications, services, development, testing, and more. These processes are just a component of those platforms. It may look tempting to leverage "complete stack" providers, since they achieve indeed provide one-stop shopping for cloud computing. However, you will own to invent trade-offs: You might fancy the application development features of one platform-as-a-service provider but detest the route its product manages processes or find that its process engine is sluggish. In many cases, it may live better to leverage other cloud computing providers or even on-premise software to address processes, trading simplicity for complexity but leveraging a process engine that is the perquisite apt for the architecture.

    Services (e.g., Web Services), generally speaking, can live on most cloud computing platforms. However, only a few (including platform-as-a-service, process-as-a-service, and infrastructure-as-a-service) provide the capabilities to create and host services through which application-as-a-service and information-as-a-service provide access to their hosted prebuilt services, which you can exercise but cannot change.

    The most common issue here is performance. Services such as Web Services (whether using repose or SOAP) attend to occasions performance problems if the platform hosting the service cannot provide enough computing resources, or if there are too many services and they saturate the platform and the network. Again, you need to test for performance by actually using the services, and adjust your platform, the number of services you leverage, and the route those services are designed to optimize the performance of your architecture.

    Security is not a platform or a piece of software that exists on-premise or on cloud computing platforms. If done right, it should live systemic to the holistic architecture, no matter how much of it is on-premise or cloud computing--delivered. You address security by creating a strategy and a model to secure your architecture based on the requirements you identified. Then you select the proper approach and supporting enabling technology. Security typically centers on identity management and the standards that uphold identity management.

    With the increasing interest in identity management, in uphold of more knotty and distributed architectures such as SOA and SOA using cloud computing, the need for standards to better define this space has arisen. These standards utter direct to bind together identity management systems within utter organizations into a unified whole, allowing for everyone to live known to everyone else, securely.

    Why achieve they need identity management? It is a fact that services are not for internal exercise anymore, as is the case when leveraging cloud computing. Those who leverage services (consumers) and those who produce services (providers) must live known to each other; otherwise, they risk invoking malicious or incorrect behavior, which could cost us dearly. This is clearly the case with cloud computing that leverages services.

    Governance brings its own set of issues when considering architecture and cloud computing. While there are governance systems that are cloud delivered, and they drudgery well for some types of architecture, governance systems that implement, manage, and invoke policies are runtime in nature and are typically on-premise.

    Issues to stare out for here again comprehend performance, since, in some instances, executing policies could occasions latency issues. besides principal is the governance solution's faculty to govern resources, which are typically cloud-delivered services. This means having the faculty to track remote services within the governance technology's repository as well as to monitor those services during runtime.

    Management of a widely distributed and knotty architecture, such as SOA using cloud computing, requires a management technology that can perceive both on-premise systems, which most do, and cloud computing--based systems, which only a few achieve well. Moreover, you should check whether the cloud provider has an interface on their software that allows management technology to talk to it.

    The core feeling is to provide a management platform that sees utter on-premise and cloud computing--based systems at the "working or not working" level, at the very least, acceptation they can perceive whether a system is down and how that status will impress other systems in the architecture. However, it is preferable to own a management system that can perceive systems such as services, processes, data, storage at more granular levels, which makes it much easier to diagnose issues and spot troubles before they happen.

    Management and governance are clearly linked and own very similar patterns.

    Analyze and Test Candidate Platforms

    Once you select the candidate cloud computing platforms, you need to invent sure they live up to the requirements they established. You achieve this through some profound dives into each candidate platform you selected and then through testing.

    We covered testing extensively in Chapter 9, "Testing from SOA to the Clouds," so they achieve not Go too profound into it here. However, this testing is a bit different in that you are actually testing the generic capabilities of the cloud computing platform. Specifically, you stare at how that cloud computing platform will uphold the requirements of the architectural components, including services, data, and processes, but you are not yet deploying on those platforms. They could live the wrong choices, which is why they achieve the testing.

    The only thing to add from Chapter 9 is the exercise of performance modeling and performance testing. Modeling creates a simulation of how the system should discharge under different types of loads, typically light, medium, and heavy. Performance testing determines how the architecture performs under stress. It involves modeling the architecture, including how the information will flow and the services will live invoked, and how flow and invocation impress the different computing resources, both on-premise and cloud-based. You should own a common feeling as to what performance you can anticipate from the cloud computing platforms and how things such as decreasing processing power or expanding bandwidth should impress overall performance.

    While proving the performance models, you should leverage performance testing, determining how well and how rapid the holistic architecture, both on-premise and cloud-based, will uphold the business. Moreover, measure how the system performs during an ever-increasing storage, database, process, and service-processing load. If they achieve not discharge well, find out where the bottlenecks are: in the network? the database? services? If necessary, drudgery with the cloud provider to reform them.

    Select Target Platforms

    Once they Go through utter of the analysis, including a service-, process-, and data-level understanding of their problem domain, and own considered both security and governance, compiled a list of candidate systems, and completed the validation testing, it is time to pick the cloud computing platforms.

    This step is pretty smooth considering that any issue around the platform's faculty to meet the requirements of the architecture, and thus the business, should live well known and understood by now. Also, keep in reason that it is more likely that the final selection of the suite of target cloud computing platforms is very different from what you first envisioned, but if you did your homework and followed each step in this book, they should live the proper platforms for your architecture.

    Also worth mentioning is the ease of switching, or should they say, the relative ease of switching, from one cloud computing platform to another if for some understanding you invent the wrong call, or more likely, if some commerce event occurs with the cloud computing platform, such as the cloud computing provider going out of commerce or a merger or acquisition changes or removes that platform. Of course, this depends on the cloud computing provider you selected, its exercise of standards, and your faculty to find another provider that offers similar characteristics and features.

    The commerce issues are more principal if you are looking to create an SOA using cloud computing, since that scenario depends entirely on the cloud provider to sojourn in commerce and keep up and running. You need to carefully consider

  • The viability of the provider and the likelihood that it will provide ongoing uphold for your cloud computing platforms.
  • The provider's faculty to recover from hardware, software, and networkfailures, dynamically and with minimum downtime.
  • The service-level agreements, or SLAs, and a meeting of the minds between you and the cloud computing provider as to what service levels need to live supported for your architecture.
  • A complete understanding of the policies of the cloud computing provider and what denotes a violation. In some instances, cloud computing providers have, without notice, canceled accounts due to policy violations.
  • Deploy to Target Platforms

    This is the "just achieve it" step, acceptation that they actually port code; migrate data; create modern services, processes, and databases; and test and validate that utter services, databases, and processes are working correctly and as defined, using the steps in this book.

    The approach you should leverage here should live focused on migration and development over time, not a "big bang approach." You should select which components of the architecture should lumber to or live created on the cloud computing platforms, going from the most principal to the least.

    As you lumber these architectural components to the cloud computing platforms, invent sure they are functioning correctly and own been properly tested before poignant on to the next architectural component. While the pressure may live on to invent "the mammoth switch," the reality is that this evolutionary approach prevents problems and does not overwhelm those who deploy services, data, and processes to the cloud computing platforms. Also, this approach provides the value of learn-as-you-go, acceptation that your lore of how to invent cloud computing platforms drudgery for your architecture will multiply significantly as they lumber through this process.

    Where sociable Networking Fits with Cloud Computing

    Opinions on sociable networking vary widely, from "No way, it's too risky" to "It's a route of life; you might as well learn to leverage it for productivity." sociable networking has already been lumped in with cloud computing, so it is a worthy feeling to account its value and risks. How will you integrate sociable networking within your SOA using cloud computing architecture? Now is a worthy time to profile a set of policies.

    It does not matter whether you understand the differences between MySpace and Facebook. Most of the people who drudgery in your enterprises, IT or not, leverage some sort of sociable networking system, and most stare at it at least once a day during drudgery hours. Assuming you could set your foot down and declare this stuff against policy, most employees would find that a bit too mammoth Brother--ish and would find a route to achieve it anyway, perhaps on their cell phones or PDAs. sociable networking in the workplace is a fact of life you must deal with, and perhaps it could live another point of value that comes down from the clouds.

    To figure out the enterprise opportunities or risks involved with sociable networking, you first must define the reasons that people leverage sociable networking:

  • To communicate, both passively and actively, in an ongoing manner and through various mediums, with people in whom they are interested -- usually with friends and family, but in some cases, the activity is utter drudgery related. Typically, it's a admixture of both.
  • To learn more about areas of interest. For example, LinkedIn groups, such as SOA, Web 2.0, and enterprise architecture.
  • To leverage sociable networking within the context of the SOA using cloud computing architecture, such as allowing core enterprise systems, on-premise or cloud-based, to exchange information. For instance, sociable networking can live used to view a customer's Facebook friends list to find modern leads, and thus modern commerce opportunities, by integrating Facebook with your sales compel management system.
  • There are risks involved in online sociable networking, however. People can (and do) lose their jobs because of a posting on a sociable networking site that set their company at risk. People can live (and own been) publically embarrassed by posting pictures, videos, or other information they thought would be, uhm, private. Also, there are many cases of criminal activity using sociable networking as a mechanism to commit a crime.

    Here is the gist of it. sociable networking, in one profile or another, is always going to live around. So if you are doing enterprise IT, including cloud computing, you might as well accept it but learn how to govern through education, policies, and perhaps some technology. While there are risks, there are besides opportunities, such as the faculty to leverage information gathered by sociable networking sites to enhance marketing and sales, and by integrating those systems with your core commerce systems, both on-premise and cloud-based.

    Make sure to define to utter employees when and where it is commandeer to leverage sociable networking within the workplace. Try not to live too restrictive, but instead inform them of what is a worthy sociable networking rehearse and what is unacceptable. You will find that 99% of those who already leverage sociable networking are already using their heads.

    Keep in reason that leads are being developed, sales made, and customers supported using sociable networking systems. Not surprisingly, the reform exercise of sociable networking can own a very positive outcome on the bottom line, especially considering the access to valuable information that these sociable networking sites provide and the faculty to leverage that information to provide better commerce intelligence to uphold the core commerce systems. You may besides find that employee-to-employee communication improves using sociable networking systems, internal or public.

    Make sure to drudgery with your legal department to define written policies for sociable networking, and invent sure utter employees are alert of and committed to adhering to these policies. The feeling is to cover the company in case someone does something stupid. Again, you are mitigating the risk, not eliminating it.

    Finally, monitor the exercise of sociable networking sites with yardstick Web governance technology, including logging and trending. This is not to trap a particular person who is leveraging sociable networking but to determine the patterns of exercise over time. Also, if particular sites achieve become a problem, you can shut them off.

    What about Private Clouds?

    Until now, they own yet to hit on the notion of private clouds, beyond their introduction in Chapter 1. It is principal that they dive a bit deeper into the concept here as an architectural option for their SOA using cloud computing while they select platforms for deployment.

    Private clouds are cloud computing--like infrastructures that leverage virtualization and exist within private data centers. The core notion is that cloud computing is a worthy approach to optimize the exercise of hardware and software, and they can obtain the identical value by doing the identical trick within their data focus using virtualized resources, or private clouds. Most computing resources, such as database servers, application servers, and governance servers, are underutilized, typically running at only 5% of their capacity at any given time (based on my suffer and observations).

    A private cloud, or more exactly, the exercise of virtualization software such as VMWare, gives you the faculty to address many physical servers as one virtual server and thus to leverage the processing power of utter computing resources as if they were a single resource. You can optimize the exercise of utter hardware and software resources more so than if they were bound to a particular hardware and software platform. The virtualization software can allocate the process load between utter available servers, which improves the utilization of each computing resource.

    The End result is that you can uphold more data, services, and processes on a fewer number of servers, and this virtualization mechanism reduces costs. This approach is called private clouds because it features many of the identical benefits of cloud computing, including the faculty to reduce costs.

    Enterprises are interested in private clouds because, in many instances, they cannot host their data outside of their firewalls due to privacy and legal issues, but they want to hold odds of the cloud computing architecture. Many of them want to remain in control of their systems and information and own already invested in hardware and software, the cost of which cannot live recovered.

    Again, private clouds are basically virtualized platforms, and utter of the issues that virtualization has attempted to resolve in past years is applicable here. The patterns of virtualized platforms and the patterns of some cloud computing platforms, such as infrastructure-as-a-service, are almost identical other than the location of processing and provisioning. Where public clouds are for anyone who can note up, and in many instances the cloud users are not verified, private clouds allow only authorized persons, or internal users, to provision themselves on the private clouds.

    Many view this utilization of virtualization systems as simply jumping on the bandwagon to ride the cloud computing wave. However, it is the reality of the forthcoming modernization of the enterprise: the need to achieve much more with much less and to pickup smarter with sharing resources, both on-premise and remote. While cloud computing will clearly drive some aspects of modern enterprise architecture, the faculty to create similar value within existing and paid-for data centers is a viable architectural option and should live considered in the mix.

    New "Cloudy" Platforms

    The activities outlined in this chapter delineate some of the most fun you will own around cloud computing: actually poignant systems to the clouds and making those systems drudgery for the business. It is "doing" rather than planning or analyzing, but it is besides the trickiest of utter the activities they own outlined, and it carries the most risk.

    In addition, unless you are reading this reserve well into the future, you know that the cloud computing platforms are a bit of a poignant target, acceptation that as the hype and the market heat up, modern providers will materialize weekly, and existing providers will pack in as much functionality as they can to capture the market.

    Cloud computing platforms are easily changed, since they achieve not require the distribution of software to enterprises, and change will live an ongoing activity: constant upgrades, bug fixes, and other changes to the platform. Hopefully, these changes will lumber the overall system in better directions and not fracture your architectural components that exist on these platforms -- they will live backward compatible.

    What seems fancy an unnatural act today, as you relocate and create architectural components on cloud computing platforms, will look second nature as time progresses. Clearly, as they lumber many of their services, processes, and data out to the clouds, clouds will become a major component of enterprise architecture and SOA.

    SOA using cloud computing is the best architectural approach, as you own seen throughout the book. SOA using cloud computing provides the faculty to address computing resources using the best feasible configuration, and it matters not where those computing resources reside. They continue to extend them to the clouds, and more clouds will surely appear.

    Making the lumber to Cloud Computing  Cloud computing provider services and platforms  Cloud computing platforms: Migrating and testing

    This chapter excerpt is from the book, Cloud Computing and SOA Convergence in Your Enterprise: A Step-by-Step Guide, authored by Dave Linthicum, published by Addison-Wesley Professional, Sept. 2009, ISBN 0136009220, copyright 2010 Pearson Education, Inc. For a complete TOC, gratify visit the publisher site:

  • Broadcom Enhances Industry’s First NVMe RAID Solution with modern Software, Drive Topology and Management Capabilities | actual questions and Pass4sure dumps

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    Image Compression SDK supports ECW, ISO LPEG 2000 formats. | actual questions and Pass4sure dumps

    Press Release Summary:

    Featuring Enhanced Compressed Wavelet (ECW) v3 support, 16-bit support, and compression algorithm, ERDAS ECW/JP2 SDK v5 increases flexibility and performance for ECW and ISO JPEG 2000 image compression formats. Organizations can compress petabytes of imagery down to 5% of its original size, fostering efficient management and delivery of data while preserving image quality. ISO-certified JPEG 2000 is numerically lossless compressed image format commonly used for geospatial imagery.

    Original Press Release: Intergraph® Increases the Power of Image Compression

    Read and Create Image Compression Formats in Third-Party Applications via the Latest Version of ERDAS ECW/JP2 SDK

    HUNTSVILLE, Ala.--Intergraph(®) has released an updated SDK that will multiply flexibility and performance for the industry-leading Enhanced Compressed Wavelet (ECW) and ISO JPEG 2000 image compression formats.

    The latest version of ERDAS ECW/JP2 SDK, Version 5, allows software developers to enable rapid and efficient file handling in their applications by including robust uphold for selected wavelet compression formats and protocols. The modern release includes uphold for ECW Version 3, 16-bit uphold and a re-architected compression algorithm for vastly improved performance.

    "Users worldwide depend on their ECW technology to deliver time during imagery processing and transfer, and reduce the hardware requirements for their geospatial workflows," said Mladen Stojic, Vice President - Geospatial, Intergraph. "By expanding the exercise of this technology across multiple solutions, users can more easily compress bulky imagery files into manageable sizes while preserving the visual quality of the images."

    As de facto standards adopted by GIS, CAD and remote sensing packages worldwide, ECW and JPEG 2000 accelerate the delivery and panoply of imagery to provide the best performance and user experience. Serving imagery as ECW files minimizes the impact of managing and distributing great image data, ultimately reducing hardware and network costs. Organizations can now compress petabytes of imagery down to five percent of its original size, enabling faster, more efficient management and delivery of data, while preserving image quality. ISO-certified JPEG 2000 is a numerically lossless compressed image format commonly used for geospatial imagery.

    The ERDAS ECW/JP2 SDK has produced stable, high-quality commercial applications for over 10 years, and consistently enables third party developers to provide the robust and unrivalled imagery uphold their customers expect.  ECW uphold is virtually ubiquitous across leading geospatial and CAD software packages, including those from Intergraph, as well as software from AutoDesk, Blue Marble, CadCorp, ENVI, ESRI ArcGIS, Geomatica, LizardTech, GeoExpress, FalconView, Global Mapper, MapInfo, Manifold System, MicroStation, and Smallworld.  ECW is besides supported by open source geospatial packages such as GDAL, QGIS, GeoServer and MapServer.

    ERDAS APOLLO users benefit the most from ECW technology, with the faculty to directly create, read and serve ECW files. Users can compress data to manageable sizes, while retaining the richness of the data quality and appearance, as well as exercise the catalog to organize any data kind in their enterprise into one comprehensive library.  With ERDAS APOLLO, you can easily disseminate extensive archives to multitudes of end-users without putting extra pressure on enterprise systems.

    To learn more about ERDAS ECW/JP2 SDK, gratify visit the official product page on

    About Intergraph

    Intergraph is the leading global provider of engineering and geospatial software that enables customers to visualize knotty data. Businesses and governments in more than 60 countries depend on Intergraph's industry-specific software to organize vast amounts of data to invent processes and infrastructure better, safer and smarter. The company's software and services empower customers to build and operate more efficient plants and ships, create bright maps, and protect captious infrastructure and millions of people around the world.

    Intergraph operates through two divisions: Process, Power & Marine (PP&M) and Security, Government & Infrastructure (SG&I). Intergraph PP&M provides enterprise engineering software for the design, construction, operation and data management of plants, ships and offshore facilities. Intergraph SG&I provides geospatially powered solutions, including ERDAS technologies, to the public safety and security, defense and intelligence, government, transportation, photogrammetry, and utilities and communications industries. Intergraph Government Solutions (IGS) is a wholly owned subsidiary of Intergraph Corporation accountable for the SG&I U.S. federal business.

    Intergraph is Part of Hexagon (Nordic exchange: HEXA B), a leading global provider of design, measurement, and visualization technologies that enable customers to design, measure and position objects, and process and present data.

    © 2013 Intergraph Corporation. utter rights reserved. Intergraph is Part of Hexagon. Intergraph and the Intergraph logo are registered trademarks of Intergraph Corporation or its subsidiaries in the United States and in other countries. Other brands and product names are trademarks of their respective owners.

    CONTACT: Stephanie Deemer, Executive Manager Public Relations/Government Relations, +1.256.730.1075,

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