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When damage is already done, response can be tremendously costly in terms of both resource utilization and reputation damage.</li><li><span style=\"font-weight: bold;\">Context</span> – For true security effectiveness, threat alerts must contain context to allow security teams to effectively prioritize threats and organize response.</li><li><span style=\"font-weight: bold;\">Data awareness</span> – It’s impossible to determine threats truly capable of causing harm without first having a deep understanding of enterprise data, its sensitivity, value, and other factors that contribute to the formulation of an appropriate response.</li></ul>\r\nWhen a threat is detected, further analysis may be required. Security services offering ATP typically handle threat analysis, enabling enterprises to conduct business as usual while continuous monitoring, threat analysis, and response occurs behind the scenes. Threats are typically prioritized by potential damage and the classification or sensitivity of the data at risk. Advanced threat protection should address three key areas:\r\n<ul><li>Halting attacks in progress or mitigating threats before they breach systems</li><li>Disrupting activity in progress or countering actions that have already occurred as a result of a breach</li><li>Interrupting the lifecycle of the attack to ensure that the threat is unable to progress or proceed</li></ul>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon-ATP.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]}],"countries":[],"startDate":"0000-00-00","endDate":"0000-00-00","dealDate":"0000-00-00","price":0,"status":"in_process","statusLabel":"In Process","isImplementation":true,"isAgreement":false,"confirmed":0,"implementationDetails":{},"categories":[{"id":824,"title":"ATP - Advanced Threat Protection","alias":"atp-advanced-threat-protection","description":" Advanced threat protection (ATP) refers to a category of security solutions that defend against sophisticated malware or hacking-based attacks targeting sensitive data. Advanced threat protection solutions can be available as software or as managed services. ATP solutions can differ in approaches and components, but most include some combination of endpoint agents, network devices, email gateways, malware protection systems, and a centralized management console to correlate alerts and manage defenses.\r\nThe primary benefit offered by advanced threat protection software is the ability to prevent, detect, and respond to new and sophisticated attacks that are designed to circumvent traditional security solutions such as antivirus, firewalls, and IPS/IDS. Attacks continue to become increasingly targeted, stealthy, and persistent, and ATP solutions take a proactive approach to security by identifying and eliminating advanced threats before data is compromised.\r\nAdvanced threat protection services build on this benefit by providing access to a global community of security professionals dedicated to monitoring, tracking, and sharing information about emerging and identified threats. ATP service providers typically have access to global threat information sharing networks, augmenting their own threat intelligence and analysis with information from third parties. When a new, advanced threat is detected, ATP service providers can update their defenses to ensure protection keeps up. This global community effort plays a substantial role in maintaining the security of enterprises around the world.\r\nEnterprises that implement advanced threat protection are better able to detect threats early and more quickly formulate a response to minimize damage and recover should an attack occur. A good security provider will focus on the lifecycle of an attack and manage threats in real-time. ATP providers notify the enterprise of attacks that have occurred, the severity of the attack, and the response that was initiated to stop the threat in its tracks or minimize data loss. Whether managed in-house or provided as a service, advanced threat protection solutions secure critical data and systems, no matter where the attack originates or how major the attack or potential attack is perceived.","materialsDescription":" <span style=\"font-weight: bold;\">How Advanced Threat Protection Works?</span>\r\nThere are three primary goals of advanced threat protection: early detection (detecting potential threats before they have the opportunity to access critical data or breach systems), adequate protection (the ability to defend against detected threats swiftly), and response (the ability to mitigate threats and respond to security incidents). To achieve these goals, advanced threat protection services and solutions must offer several components and functions for comprehensive ATP:\r\n<ul><li><span style=\"font-weight: bold;\">Real-time visibility</span> – Without continuous monitoring and real-time visibility, threats are often detected too late. When damage is already done, response can be tremendously costly in terms of both resource utilization and reputation damage.</li><li><span style=\"font-weight: bold;\">Context</span> – For true security effectiveness, threat alerts must contain context to allow security teams to effectively prioritize threats and organize response.</li><li><span style=\"font-weight: bold;\">Data awareness</span> – It’s impossible to determine threats truly capable of causing harm without first having a deep understanding of enterprise data, its sensitivity, value, and other factors that contribute to the formulation of an appropriate response.</li></ul>\r\nWhen a threat is detected, further analysis may be required. Security services offering ATP typically handle threat analysis, enabling enterprises to conduct business as usual while continuous monitoring, threat analysis, and response occurs behind the scenes. Threats are typically prioritized by potential damage and the classification or sensitivity of the data at risk. Advanced threat protection should address three key areas:\r\n<ul><li>Halting attacks in progress or mitigating threats before they breach systems</li><li>Disrupting activity in progress or countering actions that have already occurred as a result of a breach</li><li>Interrupting the lifecycle of the attack to ensure that the threat is unable to progress or proceed</li></ul>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon-ATP.png"}],"additionalInfo":{"budgetNotExceeded":"","functionallyTaskAssignment":"","projectWasPut":"","price":0,"source":{"url":"","title":"-"}},"comments":[],"referencesCount":0}],"vendorImplementations":[],"userImplementations":[],"userImplementationsCount":0,"supplierImplementationsCount":1,"vendorImplementationsCount":0,"vendorPartnersCount":0,"supplierPartnersCount":0,"b4r":1,"categories":{"4":{"id":4,"title":"Data center","description":" A data center (or datacenter) is a facility composed of networked computers and storage that businesses or other organizations use to organize, process, store and disseminate large amounts of data. A business typically relies heavily upon the applications, services and data contained within a data center, making it a focal point and critical asset for everyday operations.\r\nData centers are not a single thing, but rather, a conglomeration of elements. At a minimum, data centers serve as the principal repositories for all manner of IT equipment, including servers, storage subsystems, networking switches, routers and firewalls, as well as the cabling and physical racks used to organize and interconnect the IT equipment. A data center must also contain an adequate infrastructure, such as power distribution and supplemental power subsystems, including electrical switching; uninterruptable power supplies; backup generators and so on; ventilation and data center cooling systems, such as computer room air conditioners; and adequate provisioning for network carrier (telco) connectivity. All of this demands a physical facility with physical security and sufficient physical space to house the entire collection of infrastructure and equipment.","materialsDescription":" <span style=\"font-weight: bold;\">What are the requirements for modern data centers?</span>\r\nModernization and data center transformation enhances performance and energy efficiency.\r\nInformation security is also a concern, and for this reason a data center has to offer a secure environment which minimizes the chances of a security breach. A data center must therefore keep high standards for assuring the integrity and functionality of its hosted computer environment.\r\nIndustry research company International Data Corporation (IDC) puts the average age of a data center at nine years old. Gartner, another research company, says data centers older than seven years are obsolete. The growth in data (163 zettabytes by 2025) is one factor driving the need for data centers to modernize.\r\nFocus on modernization is not new: Concern about obsolete equipment was decried in 2007, and in 2011 Uptime Institute was concerned about the age of the equipment therein. By 2018 concern had shifted once again, this time to the age of the staff: "data center staff are aging faster than the equipment."\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Meeting standards for data centers</span></span>\r\nThe Telecommunications Industry Association's Telecommunications Infrastructure Standard for Data Centers specifies the minimum requirements for telecommunications infrastructure of data centers and computer rooms including single tenant enterprise data centers and multi-tenant Internet hosting data centers. The topology proposed in this document is intended to be applicable to any size data center.\r\nTelcordia GR-3160, NEBS Requirements for Telecommunications Data Center Equipment and Spaces, provides guidelines for data center spaces within telecommunications networks, and environmental requirements for the equipment intended for installation in those spaces. These criteria were developed jointly by Telcordia and industry representatives. They may be applied to data center spaces housing data processing or Information Technology (IT) equipment. The equipment may be used to:\r\n<ul><li>Operate and manage a carrier's telecommunication network</li><li>Provide data center based applications directly to the carrier's customers</li><li>Provide hosted applications for a third party to provide services to their customers</li><li>Provide a combination of these and similar data center applications</li></ul>\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Data center transformation</span></span>\r\nData center transformation takes a step-by-step approach through integrated projects carried out over time. This differs from a traditional method of data center upgrades that takes a serial and siloed approach. The typical projects within a data center transformation initiative include standardization/consolidation, virtualization, automation and security.\r\n<ul><li>Standardization/consolidation: Reducing the number of data centers and avoiding server sprawl (both physical and virtual) often includes replacing aging data center equipment, and is aided by standardization.</li><li>Virtualization: Lowers capital and operational expenses, reduce energy consumption. Virtualized desktops can be hosted in data centers and rented out on a subscription basis. Investment bank Lazard Capital Markets estimated in 2008 that 48 percent of enterprise operations will be virtualized by 2012. Gartner views virtualization as a catalyst for modernization.</li><li>Automating: Automating tasks such as provisioning, configuration, patching, release management and compliance is needed, not just when facing fewer skilled IT workers.</li><li>Securing: Protection of virtual systems is integrated with existing security of physical infrastructures.</li></ul>\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Machine room</span></span>\r\nThe term "Machine Room" is at times used to refer to the large room within a Data Center where the actual Central Processing Unit is located; this may be separate from where high-speed printers are located. Air conditioning is most important in the machine room.\r\nAside from air-conditioning, there must be monitoring equipment, one type of which is to detect water prior to flood-level situations. One company, for several decades, has had share-of-mind: Water Alert. The company, as of 2018, has 2 competing manufacturers (Invetex, Hydro-Temp) and 3 competing distributors (Longden,Northeast Flooring, Slayton). ","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Data_center.png","alias":"data-center"},"397":{"id":397,"title":"Mobile Testing","description":" Mobile application testing is the process through which applications are tested for required quality, functionality, compatibility, usability, performance and other characteristics.\r\nIt includes a broad range of application testing and evaluation techniques that encompasses both standard software testing and mobile-platform-specific testing procedures.\r\nMobile application testing is typically performed by mobile application developers after a mobile application is developed or before it is released to consumers. Typically, the key objectives of mobile application testing are:\r\n<span style=\"font-style: italic;\">Hardware compatibility and functionality</span> - The mobile application’s response to a mobile device's physical input and interaction with components. This includes a touch screen, keyboard, display, sensors, network and more.\r\n<span style=\"font-style: italic;\">OS compatibility</span> - Evaluates and ensures that the application is completely compatible with different OS platforms.\r\n<span style=\"font-style: italic;\">Source code evaluation</span> - Identifies and resolves any code errors and bugs within the application.\r\n<span style=\"font-style: italic;\">Usability and Functionality</span> - The application is easy to use and provides all desired functionalities.","materialsDescription":" <span style=\"font-weight: bold;\">How is mobile application testing different from mobile testing?</span>\r\nWhen you are asked to do mobile testing, you must test the mobile phone itself. It may include protocol testing, battery testing, network connectivity testing, software compatibility testing and more.\r\nOn the other hand, mobile application testing is to test applications and software built for mobile phones. In this case, the application needs to be tested to verify whether it meets the specified functional and non-functional requirements.\r\n<span style=\"font-weight: bold;\">What are the different types of mobile application testing?</span>\r\n<ol><li>Functional Testing</li><li>User Interface Testing</li><li>Usability Testing</li><li>Performance Testing</li><li>Stress Testing</li><li>Compatibility Testing</li><li>Interruption Testing</li></ol>\r\n<span style=\"font-weight: bold;\">What is the most important type of mobile application testing?</span>\r\nWhile you cannot neglect any of the above testing types; some of them definitely deserve more attention than the others. For example, user interface testing must be done extensively to make sure that the application’s color schemes, consistency, menu styles, navigation, etc. are perfect.\r\nApart from the listed ones, it is also important to carry out monkey testing of the application to examine the stability of application when continuous invalid user inputs are provided.\r\nAnother important aspect of mobile application testing is to examine how the application reacts when there is no or little network coverage.\r\n<span style=\"font-weight: bold;\">What are the best ways to carry out mobile application testing?</span>\r\nMobile application testing is not just about writing test cases and executing them. Below are some pointers that can help a tester test mobile applications in the most effective manner.\r\n<ul><li>Explore and learn about mobile phones and their attributes. Domain knowledge will really help you see beyond the obvious.</li><li>Understand when, how and where the application will be used and then create test cases.</li><li>Study the mobile phones on which the applications will run and write appropriate test cases.</li><li>Use simulators as often as possible to execute the test cases.</li><li>Use remote device services (RDA) as well.</li></ul>\r\n<span style=\"font-weight: bold;\">Can mobile application testing be automated?</span>\r\nYes, it can. The fact that mobile application testing is gradually grasping the attention of the IT industry may be the reason why mobile test automation tools are being released into the market. It is best to keep your options open and explore all forms of mobile application testing and choose the ones that best suit your needs.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Mobile_Testing.png","alias":"mobile-testing"},"403":{"id":403,"title":"Software Quality Analysis and Measurement","description":" Software quality measures whether the software satisfies its requirements. Software requirements are classified as either functional or non-functional.\r\nFunctional requirements specify what the software should do. Functional requirements could be calculations, technical details, data manipulation, and processing, or any other specific function that defines what an application is meant to accomplish.\r\nNon-functional requirements specify how the system should work. Also known as “quality attributes” non-functional requirements include things like disaster recovery, portability, privacy, security, supportability, and usability.\r\nNote that most factors indicating software quality fit into the non-functional requirements category. And, while it’s obviously important that software does what it’s built to do, this is the bare minimum you would expect from any application.\r\nBelow are some examples of test metrics and methods for measuring the important aspects of software quality. Efficient measuring and testing of your software for quality is the only way to maximize the chances of releasing high-quality software in today’s fast-paced development environments.\r\nYou can measure reliability by counting the number of high priority bugs found in production. You can also use load testing, which assesses how well the software functions under ordinary conditions of use. It’s important to note that “ordinary conditions of use” can vary between low loads and high loads—the point is that such environments are expected.\r\nLoad testing is also useful for measuring performance efficiency. Stress testing is an important variation on load testing used to determine the maximum operating capacity of an application.\r\nStress testing is conducted by inundating software with requests far exceeding its normal and expected patterns of use to determine how far a system can be pushed before it breaks. With stress testing, you get insight into the recoverability of the software when it breaks—ideally, a system that fails should have a smooth recovery.\r\nYou can measure security by assessing how long it takes to patch or fix software vulnerabilities. You can also check actual security incidents from previous software versions, including whether the system was breached and if any breaches caused downtime for users. All previous security issues should, of course, be addressed in future releases.\r\nCounting the number of lines of code is a simple measure of maintainability—software with more lines of code is harder to maintain, meaning changes are more likely to lead to errors.\r\nThere are several detailed test metrics used to check the complexity of code, such as cyclomatic complexity, which counts the amount of linearly independent paths through a program’s source code.\r\nYou can check the rate of delivery by counting the number of software releases. Another measure is the number of “stories” or user requirements shipped to the user.\r\nYou can test the GUI to make sure it’s simple and not frustrating for end-users. The problem is that GUI testing is complex and time-consuming – there are many possible GUI operations and sequences that require testing in most software. And that means it takes a long time to design test cases.\r\nThe complexity of GUI testing competes with the objective of releasing software quickly, which has necessitated the implementation of automated testing. Several test suites that completely simulate user behavior are available.","materialsDescription":" <span style=\"font-weight: bold;\">What is Software Quality Metrics?</span>\r\nThe word 'metrics' refers to standards for measurements. Software Quality Metrics means a measurement of attributes, pertaining to software quality along with its process of development.\r\nThe term "software quality metrics" illustrate the picture of measuring the software qualities by recording the number of defects or security loopholes present in the software. However, quality measurement is not restricted to the counting defects or vulnerabilities but also covers other aspects of qualities such as maintainability, reliability, integrity, usability, customer satisfaction, etc.\r\n<span style=\"font-weight: bold;\">Why Software Quality Metrics?</span>\r\n<ol><li>To define and categorize elements in order to have a better understanding of each and every process and attribute.</li><li>To evaluate and assess each of these processes and attribute against the given requirements and specifications.</li><li>Predicting and planning the next move w.r.t software and business requirements.</li><li>Improving the Overall quality of the process and product, and subsequently of project.</li></ol>\r\n<span style=\"font-weight: bold;\">Software Quality Metrics: a sub-category of Software Metrics</span>\r\nIt is basically, a subclass of software metrics that mainly emphasizes on quality assets of the software product, process and project. A software metric is a broader concept that incorporates software quality metrics in it, and mainly consists of three types of metrics:\r\n<ul><li><span style=\"font-weight: bold;\">Product Metrics:</span> it includes size, design, complexity, performance and other parameters that are associated with the product's quality.</li><li><span style=\"font-weight: bold;\">Process Metrics:</span> it involves parameters like time-duration in locating and removing defects, response time for resolving issues, etc.</li><li><span style=\"font-weight: bold;\">Project Metrics:</span> it may include a number of teams, developers involved, cost and duration for the project, etc.</li></ul>\r\n<span style=\"font-weight: bold;\">Features of good Software Quality Metrics:</span>\r\n<ul><li>Should be specific to measure the particular attribute or an attribute of greater importance.</li><li>Comprehensive for a wide variety of scenarios.</li><li>Should not consider attributes that have already been measured by some other metric.</li><li>Reliable to work similarly in all conditions.</li><li>Should be easy and simple to understand and operate.</li></ul>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Software_Quality_Analysis_and_Measurement.png","alias":"software-quality-analysis-and-measurement"},"501":{"id":501,"title":"All-flash and Hybrid Storage","description":" Costs have come down making hybrid and all-flash enterprise storage solutions the preferred choice for storing, processing and moving the massive volumes of business data generated in today’s cloud, mobile and IoT environment.\r\nll-flash storage arrays utilize solid-state drives (SSDs) to deliver high-performance and low-latency workloads using data compression and deduplication technologies. Hybrid Storage combines those same solid-state drives (SSDs) with SAS or NL-SAS drives to offer a more cost-effective storage solution that balances cost with superior performance and high storage density.\r\nBoth options lower the complexity of providing scale-out performance at ultralow latency for data-intensive loads and big data analytics.\r\nWhether you are building a new storage array or refreshing your existing storage infrastructure we will work with you to plan, source, install and configure a storage solution to meet you budgetary and business requirements.","materialsDescription":" <span style=\"font-weight: bold;\">What is flash storage and what is it used for?</span>\r\nFlash storage is any storage repository that uses flash memory. Flash memory comes in many form factors, and you probably use flash storage every day. From a single Flash chip on a simple circuit board attached to your computing device via USB to circuit boards in your phone or MP3 player, to a fully integrated “Enterprise Flash Disk” where lots of chips are attached to a circuit board in a form factor that can be used in place of a spinning disk.\r\n<span style=\"font-weight: bold;\">What is flash storage SSD?</span>\r\nA “Solid State Disk” or EFD “Enterprise Flash Disk” is a fully integrated circuit board where many Flash chips are engineered to represent a single Flash disk. Primarily used to replace a traditional spinning disk, SSDs are used in MP3 players, laptops, servers and enterprise storage systems.\r\n<span style=\"font-weight: bold;\">What is the difference between flash storage and SSD?</span>\r\nFlash storage is a reference to any device that can function as a storage repository. Flash storage can be a simple USB device or a fully integrated All-Flash Storage Array. SSD, “Solid State Disk” is an integrated device designed to replace spinning media, commonly used in enterprise storage arrays.\r\n<span style=\"font-weight: bold;\">What is the difference between flash storage and traditional hard drives?</span>\r\nA traditional hard drive leveraged rotating platters and heads to read data from a magnetic device, comparable to a traditional record player; while flash storage leveraged electronic media or flash memory, to vastly improve performance. Flash eliminates rotational delay and seeks time, functions that add latency to traditional storage media.\r\n<span style=\"font-weight: bold;\">What is the difference between an all-flash array and a hybrid array?</span>\r\nA Hybrid Storage Array uses a combination of spinning disk drives and Flash SSD. Along with the right software, a Hybrid Array can be configured to improve overall performance while reducing cost. An All-Flash-Array is designed to support only SSD media.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Al_flash_and_Hybrid_Storage.png","alias":"all-flash-and-hybrid-storage"},"824":{"id":824,"title":"ATP - Advanced Threat Protection","description":" Advanced threat protection (ATP) refers to a category of security solutions that defend against sophisticated malware or hacking-based attacks targeting sensitive data. Advanced threat protection solutions can be available as software or as managed services. ATP solutions can differ in approaches and components, but most include some combination of endpoint agents, network devices, email gateways, malware protection systems, and a centralized management console to correlate alerts and manage defenses.\r\nThe primary benefit offered by advanced threat protection software is the ability to prevent, detect, and respond to new and sophisticated attacks that are designed to circumvent traditional security solutions such as antivirus, firewalls, and IPS/IDS. Attacks continue to become increasingly targeted, stealthy, and persistent, and ATP solutions take a proactive approach to security by identifying and eliminating advanced threats before data is compromised.\r\nAdvanced threat protection services build on this benefit by providing access to a global community of security professionals dedicated to monitoring, tracking, and sharing information about emerging and identified threats. ATP service providers typically have access to global threat information sharing networks, augmenting their own threat intelligence and analysis with information from third parties. When a new, advanced threat is detected, ATP service providers can update their defenses to ensure protection keeps up. This global community effort plays a substantial role in maintaining the security of enterprises around the world.\r\nEnterprises that implement advanced threat protection are better able to detect threats early and more quickly formulate a response to minimize damage and recover should an attack occur. A good security provider will focus on the lifecycle of an attack and manage threats in real-time. ATP providers notify the enterprise of attacks that have occurred, the severity of the attack, and the response that was initiated to stop the threat in its tracks or minimize data loss. Whether managed in-house or provided as a service, advanced threat protection solutions secure critical data and systems, no matter where the attack originates or how major the attack or potential attack is perceived.","materialsDescription":" <span style=\"font-weight: bold;\">How Advanced Threat Protection Works?</span>\r\nThere are three primary goals of advanced threat protection: early detection (detecting potential threats before they have the opportunity to access critical data or breach systems), adequate protection (the ability to defend against detected threats swiftly), and response (the ability to mitigate threats and respond to security incidents). To achieve these goals, advanced threat protection services and solutions must offer several components and functions for comprehensive ATP:\r\n<ul><li><span style=\"font-weight: bold;\">Real-time visibility</span> – Without continuous monitoring and real-time visibility, threats are often detected too late. When damage is already done, response can be tremendously costly in terms of both resource utilization and reputation damage.</li><li><span style=\"font-weight: bold;\">Context</span> – For true security effectiveness, threat alerts must contain context to allow security teams to effectively prioritize threats and organize response.</li><li><span style=\"font-weight: bold;\">Data awareness</span> – It’s impossible to determine threats truly capable of causing harm without first having a deep understanding of enterprise data, its sensitivity, value, and other factors that contribute to the formulation of an appropriate response.</li></ul>\r\nWhen a threat is detected, further analysis may be required. Security services offering ATP typically handle threat analysis, enabling enterprises to conduct business as usual while continuous monitoring, threat analysis, and response occurs behind the scenes. Threats are typically prioritized by potential damage and the classification or sensitivity of the data at risk. Advanced threat protection should address three key areas:\r\n<ul><li>Halting attacks in progress or mitigating threats before they breach systems</li><li>Disrupting activity in progress or countering actions that have already occurred as a result of a breach</li><li>Interrupting the lifecycle of the attack to ensure that the threat is unable to progress or proceed</li></ul>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon-ATP.png","alias":"atp-advanced-threat-protection"}},"companyUrl":"","countryCodes":["UKR"],"certifications":[],"isSeller":true,"isSupplier":true,"isVendor":true,"presenterCodeLng":"","seo":{"title":"EnTest","keywords":"","description":"","og:title":"EnTest","og:description":"","og:image":""},"eventUrl":"","vendorPartners":[],"supplierPartners":[],"vendoredProducts":[{"id":6936,"logoURL":"https://old.roi4cio.com/fileadmin/content/pitch-avatar-logo-blue-text-black-300x141.png","logo":true,"scheme":false,"title":"UA test changed name","vendorVerified":0,"rating":"0.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":0,"alias":"ua-test","companyTitle":"EnTest","companyTypes":["supplier","vendor"],"companyId":10771,"companyAlias":"entest","description":null,"shortDescription":"Testing software","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":0,"sellingCount":0,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"UA test changed name","keywords":"","description":"","og:title":"UA test changed name","og:description":"","og:image":"https://old.roi4cio.com/fileadmin/content/pitch-avatar-logo-blue-text-black-300x141.png"},"eventUrl":"","translationId":6936,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[],"testingArea":"","categories":[{"id":397,"title":"Mobile Testing","alias":"mobile-testing","description":" Mobile application testing is the process through which applications are tested for required quality, functionality, compatibility, usability, performance and other characteristics.\r\nIt includes a broad range of application testing and evaluation techniques that encompasses both standard software testing and mobile-platform-specific testing procedures.\r\nMobile application testing is typically performed by mobile application developers after a mobile application is developed or before it is released to consumers. Typically, the key objectives of mobile application testing are:\r\n<span style=\"font-style: italic;\">Hardware compatibility and functionality</span> - The mobile application’s response to a mobile device's physical input and interaction with components. This includes a touch screen, keyboard, display, sensors, network and more.\r\n<span style=\"font-style: italic;\">OS compatibility</span> - Evaluates and ensures that the application is completely compatible with different OS platforms.\r\n<span style=\"font-style: italic;\">Source code evaluation</span> - Identifies and resolves any code errors and bugs within the application.\r\n<span style=\"font-style: italic;\">Usability and Functionality</span> - The application is easy to use and provides all desired functionalities.","materialsDescription":" <span style=\"font-weight: bold;\">How is mobile application testing different from mobile testing?</span>\r\nWhen you are asked to do mobile testing, you must test the mobile phone itself. It may include protocol testing, battery testing, network connectivity testing, software compatibility testing and more.\r\nOn the other hand, mobile application testing is to test applications and software built for mobile phones. In this case, the application needs to be tested to verify whether it meets the specified functional and non-functional requirements.\r\n<span style=\"font-weight: bold;\">What are the different types of mobile application testing?</span>\r\n<ol><li>Functional Testing</li><li>User Interface Testing</li><li>Usability Testing</li><li>Performance Testing</li><li>Stress Testing</li><li>Compatibility Testing</li><li>Interruption Testing</li></ol>\r\n<span style=\"font-weight: bold;\">What is the most important type of mobile application testing?</span>\r\nWhile you cannot neglect any of the above testing types; some of them definitely deserve more attention than the others. For example, user interface testing must be done extensively to make sure that the application’s color schemes, consistency, menu styles, navigation, etc. are perfect.\r\nApart from the listed ones, it is also important to carry out monkey testing of the application to examine the stability of application when continuous invalid user inputs are provided.\r\nAnother important aspect of mobile application testing is to examine how the application reacts when there is no or little network coverage.\r\n<span style=\"font-weight: bold;\">What are the best ways to carry out mobile application testing?</span>\r\nMobile application testing is not just about writing test cases and executing them. Below are some pointers that can help a tester test mobile applications in the most effective manner.\r\n<ul><li>Explore and learn about mobile phones and their attributes. Domain knowledge will really help you see beyond the obvious.</li><li>Understand when, how and where the application will be used and then create test cases.</li><li>Study the mobile phones on which the applications will run and write appropriate test cases.</li><li>Use simulators as often as possible to execute the test cases.</li><li>Use remote device services (RDA) as well.</li></ul>\r\n<span style=\"font-weight: bold;\">Can mobile application testing be automated?</span>\r\nYes, it can. The fact that mobile application testing is gradually grasping the attention of the IT industry may be the reason why mobile test automation tools are being released into the market. It is best to keep your options open and explore all forms of mobile application testing and choose the ones that best suit your needs.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Mobile_Testing.png"},{"id":403,"title":"Software Quality Analysis and Measurement","alias":"software-quality-analysis-and-measurement","description":" Software quality measures whether the software satisfies its requirements. Software requirements are classified as either functional or non-functional.\r\nFunctional requirements specify what the software should do. Functional requirements could be calculations, technical details, data manipulation, and processing, or any other specific function that defines what an application is meant to accomplish.\r\nNon-functional requirements specify how the system should work. Also known as “quality attributes” non-functional requirements include things like disaster recovery, portability, privacy, security, supportability, and usability.\r\nNote that most factors indicating software quality fit into the non-functional requirements category. And, while it’s obviously important that software does what it’s built to do, this is the bare minimum you would expect from any application.\r\nBelow are some examples of test metrics and methods for measuring the important aspects of software quality. Efficient measuring and testing of your software for quality is the only way to maximize the chances of releasing high-quality software in today’s fast-paced development environments.\r\nYou can measure reliability by counting the number of high priority bugs found in production. You can also use load testing, which assesses how well the software functions under ordinary conditions of use. It’s important to note that “ordinary conditions of use” can vary between low loads and high loads—the point is that such environments are expected.\r\nLoad testing is also useful for measuring performance efficiency. Stress testing is an important variation on load testing used to determine the maximum operating capacity of an application.\r\nStress testing is conducted by inundating software with requests far exceeding its normal and expected patterns of use to determine how far a system can be pushed before it breaks. With stress testing, you get insight into the recoverability of the software when it breaks—ideally, a system that fails should have a smooth recovery.\r\nYou can measure security by assessing how long it takes to patch or fix software vulnerabilities. You can also check actual security incidents from previous software versions, including whether the system was breached and if any breaches caused downtime for users. All previous security issues should, of course, be addressed in future releases.\r\nCounting the number of lines of code is a simple measure of maintainability—software with more lines of code is harder to maintain, meaning changes are more likely to lead to errors.\r\nThere are several detailed test metrics used to check the complexity of code, such as cyclomatic complexity, which counts the amount of linearly independent paths through a program’s source code.\r\nYou can check the rate of delivery by counting the number of software releases. Another measure is the number of “stories” or user requirements shipped to the user.\r\nYou can test the GUI to make sure it’s simple and not frustrating for end-users. The problem is that GUI testing is complex and time-consuming – there are many possible GUI operations and sequences that require testing in most software. And that means it takes a long time to design test cases.\r\nThe complexity of GUI testing competes with the objective of releasing software quickly, which has necessitated the implementation of automated testing. Several test suites that completely simulate user behavior are available.","materialsDescription":" <span style=\"font-weight: bold;\">What is Software Quality Metrics?</span>\r\nThe word 'metrics' refers to standards for measurements. Software Quality Metrics means a measurement of attributes, pertaining to software quality along with its process of development.\r\nThe term "software quality metrics" illustrate the picture of measuring the software qualities by recording the number of defects or security loopholes present in the software. However, quality measurement is not restricted to the counting defects or vulnerabilities but also covers other aspects of qualities such as maintainability, reliability, integrity, usability, customer satisfaction, etc.\r\n<span style=\"font-weight: bold;\">Why Software Quality Metrics?</span>\r\n<ol><li>To define and categorize elements in order to have a better understanding of each and every process and attribute.</li><li>To evaluate and assess each of these processes and attribute against the given requirements and specifications.</li><li>Predicting and planning the next move w.r.t software and business requirements.</li><li>Improving the Overall quality of the process and product, and subsequently of project.</li></ol>\r\n<span style=\"font-weight: bold;\">Software Quality Metrics: a sub-category of Software Metrics</span>\r\nIt is basically, a subclass of software metrics that mainly emphasizes on quality assets of the software product, process and project. A software metric is a broader concept that incorporates software quality metrics in it, and mainly consists of three types of metrics:\r\n<ul><li><span style=\"font-weight: bold;\">Product Metrics:</span> it includes size, design, complexity, performance and other parameters that are associated with the product's quality.</li><li><span style=\"font-weight: bold;\">Process Metrics:</span> it involves parameters like time-duration in locating and removing defects, response time for resolving issues, etc.</li><li><span style=\"font-weight: bold;\">Project Metrics:</span> it may include a number of teams, developers involved, cost and duration for the project, etc.</li></ul>\r\n<span style=\"font-weight: bold;\">Features of good Software Quality Metrics:</span>\r\n<ul><li>Should be specific to measure the particular attribute or an attribute of greater importance.</li><li>Comprehensive for a wide variety of scenarios.</li><li>Should not consider attributes that have already been measured by some other metric.</li><li>Reliable to work similarly in all conditions.</li><li>Should be easy and simple to understand and operate.</li></ul>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Software_Quality_Analysis_and_Measurement.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]}],"suppliedProducts":[{"id":6936,"logoURL":"https://old.roi4cio.com/fileadmin/content/pitch-avatar-logo-blue-text-black-300x141.png","logo":true,"scheme":false,"title":"UA test changed name","vendorVerified":0,"rating":"0.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":0,"alias":"ua-test","companyTitle":"EnTest","companyTypes":["supplier","vendor"],"companyId":10771,"companyAlias":"entest","description":null,"shortDescription":"Testing software","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":0,"sellingCount":0,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"UA test changed name","keywords":"","description":"","og:title":"UA test changed name","og:description":"","og:image":"https://old.roi4cio.com/fileadmin/content/pitch-avatar-logo-blue-text-black-300x141.png"},"eventUrl":"","translationId":6936,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[],"testingArea":"","categories":[{"id":397,"title":"Mobile Testing","alias":"mobile-testing","description":" Mobile application testing is the process through which applications are tested for required quality, functionality, compatibility, usability, performance and other characteristics.\r\nIt includes a broad range of application testing and evaluation techniques that encompasses both standard software testing and mobile-platform-specific testing procedures.\r\nMobile application testing is typically performed by mobile application developers after a mobile application is developed or before it is released to consumers. Typically, the key objectives of mobile application testing are:\r\n<span style=\"font-style: italic;\">Hardware compatibility and functionality</span> - The mobile application’s response to a mobile device's physical input and interaction with components. This includes a touch screen, keyboard, display, sensors, network and more.\r\n<span style=\"font-style: italic;\">OS compatibility</span> - Evaluates and ensures that the application is completely compatible with different OS platforms.\r\n<span style=\"font-style: italic;\">Source code evaluation</span> - Identifies and resolves any code errors and bugs within the application.\r\n<span style=\"font-style: italic;\">Usability and Functionality</span> - The application is easy to use and provides all desired functionalities.","materialsDescription":" <span style=\"font-weight: bold;\">How is mobile application testing different from mobile testing?</span>\r\nWhen you are asked to do mobile testing, you must test the mobile phone itself. It may include protocol testing, battery testing, network connectivity testing, software compatibility testing and more.\r\nOn the other hand, mobile application testing is to test applications and software built for mobile phones. In this case, the application needs to be tested to verify whether it meets the specified functional and non-functional requirements.\r\n<span style=\"font-weight: bold;\">What are the different types of mobile application testing?</span>\r\n<ol><li>Functional Testing</li><li>User Interface Testing</li><li>Usability Testing</li><li>Performance Testing</li><li>Stress Testing</li><li>Compatibility Testing</li><li>Interruption Testing</li></ol>\r\n<span style=\"font-weight: bold;\">What is the most important type of mobile application testing?</span>\r\nWhile you cannot neglect any of the above testing types; some of them definitely deserve more attention than the others. For example, user interface testing must be done extensively to make sure that the application’s color schemes, consistency, menu styles, navigation, etc. are perfect.\r\nApart from the listed ones, it is also important to carry out monkey testing of the application to examine the stability of application when continuous invalid user inputs are provided.\r\nAnother important aspect of mobile application testing is to examine how the application reacts when there is no or little network coverage.\r\n<span style=\"font-weight: bold;\">What are the best ways to carry out mobile application testing?</span>\r\nMobile application testing is not just about writing test cases and executing them. Below are some pointers that can help a tester test mobile applications in the most effective manner.\r\n<ul><li>Explore and learn about mobile phones and their attributes. Domain knowledge will really help you see beyond the obvious.</li><li>Understand when, how and where the application will be used and then create test cases.</li><li>Study the mobile phones on which the applications will run and write appropriate test cases.</li><li>Use simulators as often as possible to execute the test cases.</li><li>Use remote device services (RDA) as well.</li></ul>\r\n<span style=\"font-weight: bold;\">Can mobile application testing be automated?</span>\r\nYes, it can. The fact that mobile application testing is gradually grasping the attention of the IT industry may be the reason why mobile test automation tools are being released into the market. It is best to keep your options open and explore all forms of mobile application testing and choose the ones that best suit your needs.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Mobile_Testing.png"},{"id":403,"title":"Software Quality Analysis and Measurement","alias":"software-quality-analysis-and-measurement","description":" Software quality measures whether the software satisfies its requirements. Software requirements are classified as either functional or non-functional.\r\nFunctional requirements specify what the software should do. Functional requirements could be calculations, technical details, data manipulation, and processing, or any other specific function that defines what an application is meant to accomplish.\r\nNon-functional requirements specify how the system should work. Also known as “quality attributes” non-functional requirements include things like disaster recovery, portability, privacy, security, supportability, and usability.\r\nNote that most factors indicating software quality fit into the non-functional requirements category. And, while it’s obviously important that software does what it’s built to do, this is the bare minimum you would expect from any application.\r\nBelow are some examples of test metrics and methods for measuring the important aspects of software quality. Efficient measuring and testing of your software for quality is the only way to maximize the chances of releasing high-quality software in today’s fast-paced development environments.\r\nYou can measure reliability by counting the number of high priority bugs found in production. You can also use load testing, which assesses how well the software functions under ordinary conditions of use. It’s important to note that “ordinary conditions of use” can vary between low loads and high loads—the point is that such environments are expected.\r\nLoad testing is also useful for measuring performance efficiency. Stress testing is an important variation on load testing used to determine the maximum operating capacity of an application.\r\nStress testing is conducted by inundating software with requests far exceeding its normal and expected patterns of use to determine how far a system can be pushed before it breaks. With stress testing, you get insight into the recoverability of the software when it breaks—ideally, a system that fails should have a smooth recovery.\r\nYou can measure security by assessing how long it takes to patch or fix software vulnerabilities. You can also check actual security incidents from previous software versions, including whether the system was breached and if any breaches caused downtime for users. All previous security issues should, of course, be addressed in future releases.\r\nCounting the number of lines of code is a simple measure of maintainability—software with more lines of code is harder to maintain, meaning changes are more likely to lead to errors.\r\nThere are several detailed test metrics used to check the complexity of code, such as cyclomatic complexity, which counts the amount of linearly independent paths through a program’s source code.\r\nYou can check the rate of delivery by counting the number of software releases. Another measure is the number of “stories” or user requirements shipped to the user.\r\nYou can test the GUI to make sure it’s simple and not frustrating for end-users. The problem is that GUI testing is complex and time-consuming – there are many possible GUI operations and sequences that require testing in most software. And that means it takes a long time to design test cases.\r\nThe complexity of GUI testing competes with the objective of releasing software quickly, which has necessitated the implementation of automated testing. Several test suites that completely simulate user behavior are available.","materialsDescription":" <span style=\"font-weight: bold;\">What is Software Quality Metrics?</span>\r\nThe word 'metrics' refers to standards for measurements. Software Quality Metrics means a measurement of attributes, pertaining to software quality along with its process of development.\r\nThe term "software quality metrics" illustrate the picture of measuring the software qualities by recording the number of defects or security loopholes present in the software. However, quality measurement is not restricted to the counting defects or vulnerabilities but also covers other aspects of qualities such as maintainability, reliability, integrity, usability, customer satisfaction, etc.\r\n<span style=\"font-weight: bold;\">Why Software Quality Metrics?</span>\r\n<ol><li>To define and categorize elements in order to have a better understanding of each and every process and attribute.</li><li>To evaluate and assess each of these processes and attribute against the given requirements and specifications.</li><li>Predicting and planning the next move w.r.t software and business requirements.</li><li>Improving the Overall quality of the process and product, and subsequently of project.</li></ol>\r\n<span style=\"font-weight: bold;\">Software Quality Metrics: a sub-category of Software Metrics</span>\r\nIt is basically, a subclass of software metrics that mainly emphasizes on quality assets of the software product, process and project. A software metric is a broader concept that incorporates software quality metrics in it, and mainly consists of three types of metrics:\r\n<ul><li><span style=\"font-weight: bold;\">Product Metrics:</span> it includes size, design, complexity, performance and other parameters that are associated with the product's quality.</li><li><span style=\"font-weight: bold;\">Process Metrics:</span> it involves parameters like time-duration in locating and removing defects, response time for resolving issues, etc.</li><li><span style=\"font-weight: bold;\">Project Metrics:</span> it may include a number of teams, developers involved, cost and duration for the project, etc.</li></ul>\r\n<span style=\"font-weight: bold;\">Features of good Software Quality Metrics:</span>\r\n<ul><li>Should be specific to measure the particular attribute or an attribute of greater importance.</li><li>Comprehensive for a wide variety of scenarios.</li><li>Should not consider attributes that have already been measured by some other metric.</li><li>Reliable to work similarly in all conditions.</li><li>Should be easy and simple to understand and operate.</li></ul>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Software_Quality_Analysis_and_Measurement.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]}],"partnershipProgramme":null}},"aliases":{},"links":{},"meta":{},"loading":false,"error":null},"implementations":{"implementationsByAlias":{},"aliases":{},"links":{},"meta":{},"loading":false,"error":null},"agreements":{"agreementById":{},"ids":{},"links":{},"meta":{},"loading":false,"error":null},"comparison":{"loading":false,"error":false,"templatesById":{},"comparisonByTemplateId":{},"products":[],"selectedTemplateId":null},"presentation":{"type":null,"company":{},"products":[],"partners":[],"formData":{},"dataLoading":false,"dataError":false,"loading":false,"error":false},"catalogsGlobal":{"subMenuItemTitle":""}}