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We’re the proud makers of TurboTax, QuickBooks, and Mint. Our products and services help more than 50M people around the world put more money in their pockets, with less work and greater confidence.\r\nFrom uncovering data patterns for how wealth is created to designing conversational interfaces that deliver personalized experiences, we’re putting AI, ML, and an unrivaled set of data to work to help millions of people achieve financial freedom. Advance your skills in an innovative, diverse, and collaborative environment where technology makes an impact worldwide.\r\nOur culture and entrepreneurial spirit have earned us a spot on “Best Companies to Work For” lists year after year. We’re dedicated to living our mission of powering prosperity, not just through our products, but through our social impact initiatives. Through our Prosperity Hubs, we’re bringing new jobs, teaching new skills, and supporting small businesses in distressed communities to help local economies rebuild and thrive.\r\nSource: https://www.linkedin.com/company/intuit","companyTypes":["supplier","vendor"],"products":{},"vendoredProductsCount":1,"suppliedProductsCount":1,"supplierImplementations":[],"vendorImplementations":[],"userImplementations":[],"userImplementationsCount":0,"supplierImplementationsCount":0,"vendorImplementationsCount":0,"vendorPartnersCount":0,"supplierPartnersCount":0,"b4r":0,"categories":{"57":{"id":57,"title":"Engineering Applications","description":"Specific segmentations of <span style=\"font-weight: bold;\">Engineering Applications</span> include software packages, such as 2D CAD, 3D CAD, engineering analysis, project software and services, collaborative engineering software, and asset information management. These tools are used not only for asset creation but also to manage data and information throughout the lifecycle of physical assets in both infrastructure and industry. Application of optimization techniques in engineering provides as-built information to owners for operations and maintenance requirements, as well as a document for any modifications to the facility.<span style=\"font-weight: bold; \"></span>\r\n<span style=\"font-weight: bold; \">Computer-aided design (CAD)</span> is the use of computers (or workstations) to aid in the creation, modification, analysis, or optimization of a design. CAD software is used to increase the productivity of the designer, improve the quality of design, improve communications through documentation, and to create a database for manufacturing. Computer engineering and intelligent systems output is often in the form of electronic files for print, machining, or other manufacturing operations. \r\nIts use in designing electronic systems is known as electronic design automation (EDA). Application of CAD in mechanical engineering is known as mechanical design automation (MDA) or computer-aided drafting (CAD), which includes the process of creating a technical drawing with the use of computer software.\r\nCAD software for mechanical design uses either vector-based graphics to depict the objects of traditional drafting, or may also produce raster graphics showing the overall appearance of designed objects. However, it involves more than just shapes. As in the manual drafting of technical and engineering drawings, the output of CAD must convey information, such as materials, processes, dimensions, and tolerances, according to application-specific conventions.\r\nCAD is an important industrial art extensively used in many engineering applications, including automotive, shipbuilding, and aerospace industries, industrial and architectural design, electrical engineering app, prosthetics, environmental engineering applications, and many more. \r\nEngineering apps and software are: 2D layout and CAD software, 3D design and visualization systems, Pre-engineering and FEED applications, Engineering information management systems, Asset lifecycle information management systems, Asset performance management systems, P&ID and piping layout design, 3D laser scanning and point cloud modeling, 3D augmented reality simulation systems, 3D virtual reality simulation based on other technologies (photometry, etc.), 3D virtual simulation for operator training, Electrical Engineering applications and HVAC design, Engineering analysis tools, Civil engineering design packages, Fabrication and construction management systems, Software implementation services, Software maintenance & support services, Software as a service including deployment (Cloud, subscription, etc.), Collaborative software for engineering workflows, Associated databases and interfaces.","materialsDescription":"<h1 class=\"align-center\">2D and 3D CAD software</h1>\r\n<p class=\"align-left\">General-purpose CAD software includes a wide range of 2D and 3D software. Before delving into the more specific types of CAD software, it’s important to understand the difference between 2D and 3D CAD and the various industries that leverage them.</p>\r\n<p class=\"align-left\">2D CAD software offers a platform to design in two dimensions. Since 2D CAD does not allow for the creation of perspectives or scale, it is often used for drawing, sketching and drafting conceptual designs. 2D CAD is often used for floor plan development, building permit drawing and building inspection planning. Since it is mainly used as a tool for conceptual design, it is also a great starting point for most 3D designs. This gives users a basic overview of dimension and scale before they move on to 3D design. 2D CAD typically runs at a significantly lower price since it does not provide the same scale of tools and breadth of features.</p>\r\n<p class=\"align-left\">3D CAD provides a platform for designing 3D objects. The main feature of this type of CAD software is 3D solid modeling. This lets designers create objects with length, width and height, allowing more accurate scaling and visualization. With this feature, users can push and pull surfaces and manipulate designs to adjust measurements. Once the 3D design is to your liking, you can transfer it to a 3D rendering software and place the designs in fully realized 3D landscapes.</p>\r\n<h1 class=\"align-center\">BIM software</h1>\r\n<p class=\"align-left\">One of the more specific types of 3D CAD software is building information modeling software, also known as BIM software. BIM software is intended to aid in the design and construction of buildings specifically. BIM software provides users with the ability to break down building parts and see how they fit into a single finalized structure. Users can isolate walls, columns, windows, doors, etc., and alter the design. Engineers, architect, and manufacturers are just some of the professionals that use BIM software on a regular basis.</p>\r\n<h1 class=\"align-center\">Civil engineering design software</h1>\r\n<p class=\"align-left\">Civil engineering design software allows users to design 3D models of municipal buildings and structures. This includes tools for railway modeling, highway design and city infrastructure planning. Similar to BIM, civil engineering design software helps in every stage of the design process by breaking it down to drafting, designing and visualizing the final product. Best app for civil engineering also helps designers determine building costs. Civil engineering design software is perfect for engineers working in public and civil departments including transportation, structural and geotech.</p>\r\n<h1 class=\"align-center\">3D printing software</h1>\r\n<p class=\"align-left\">3D printing software facilitates the printing of real-life 3D objects. When users design an object, it can bу translated into a 3D printing software. The software then relays instructions on how to print that design to an actual 3D printer. The 3D printing software sends instructions to just print out certain parts of an object, or it can print out the entirety of an object. Some CAD software doubles as 3D printing software so you can seamlessly produce actual 3D objects all from one platform. 3D printing software can be used by manufacturers and architects to build machine or building parts. This greatly reduces production costs, as manufacturers no longer need offsite locations for manufacturing. It also gives companies a rapid test drive to see how a product would look if it were mass produced.</p>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/Engineering_Applications.png","alias":"engineering-applications"},"591":{"id":591,"title":"Software Development","description":" Software development is the process of conceiving, specifying, designing, programming, documenting, testing, and bug fixing involved in creating and maintaining applications, frameworks, or other software components. Software development is a process of writing and maintaining the source code, but in a broader sense, it includes all that is involved between the conception of the desired software through to the final manifestation of the software, sometimes in a planned and structured process. Therefore, software development may include research, new development, prototyping, modification, reuse, re-engineering, maintenance, or any other activities that result in software products.\r\nSoftware can be developed for a variety of purposes, the three most common being to meet specific needs of a specific client/business (the case with custom software), to meet a perceived need of some set of potential users (the case with commercial and open-source software), or for personal use (e.g. a scientist may write software to automate a mundane task). Embedded software development, that is, the development of embedded software, such as used for controlling consumer products, requires the development process to be integrated with the development of the controlled physical product. System software underlies applications and the programming process itself and is often developed separately.\r\nThe need for better quality control of the software development process has given rise to the discipline of software engineering, which aims to apply the systematic approach exemplified in the engineering paradigm to the process of software development.\r\nThere are many approaches to software project management, known as software development life cycle models, methodologies, processes, or models. The waterfall model is a traditional version, contrasted with the more recent innovation of agile software development.","materialsDescription":" <span style=\"font-weight: bold; \">What is software development?</span>\r\nSoftware itself is the set of instructions or programs that tell a computer what to do. It is independent of hardware and makes computers programmable. There are three basic types:\r\n<span style=\"font-weight: bold; \">System software</span> to provide core functions such as operating systems, disk management, utilities, hardware management, and other operational necessities.\r\n<span style=\"font-weight: bold; \">Programming software</span> to give programmers tools such as text editors, compilers, linkers, debuggers and other tools to create code.\r\n<span style=\"font-weight: bold; \">Application software</span> (applications or apps) to help users perform tasks. Office productivity suites, data management software, media players and security programs are examples. Applications also refer to web and mobile applications like those used to shop on Amazon.com, socialize with Facebook or post pictures to Instagram.\r\nA possible fourth type is <span style=\"font-weight: bold; \">embedded software.</span> Embedded systems software is used to control machines and devices not typically considered computers — telecommunications networks, cars, industrial robots and more. These devices, and their software, can be connected as part of the Internet of Things (IoT).\r\nSoftware development is primarily conducted by programmers, software engineers, and software developers. These roles interact and overlap, and the dynamics between them vary greatly across development departments and communities.\r\n<span style=\"font-weight: bold; \">Programmers, or coders,</span> write source code to program computers for specific tasks like merging databases, processing online orders, routing communications, conducting searches or displaying text and graphics. Programmers typically interpret instructions from software developers and engineers and use programming languages like C++ or Java to carry them out.\r\n<span style=\"font-weight: bold; \">Software engineers</span> apply engineering principles to build software and systems to solve problems. They use modeling language and other tools to devise solutions that can often be applied to problems in a general way, as opposed to merely solving for a specific instance or client. Software engineering solutions adhere to the scientific method and must work in the real world, as with bridges or elevators.\r\n<span style=\"font-weight: bold; \">Software developers</span> have a less formal role than engineers and can be closely involved with specific project areas — including writing code. At the same time, they drive the overall software development lifecycle — including working across functional teams to transform requirements into features, managing development teams and processes, and conducting software testing and maintenance.\r\nThe work of software development isn’t confined to coders or development teams. Professionals such as scientists, device fabricators, and hardware makers also create software code even though they are not primarily software developers. Nor is it confined to traditional information technology industries such as software or semiconductor businesses. In fact, according to the Brookings Institute, those businesses “account for less than half of the companies performing software development.”\r\nAn important distinction is custom software development as opposed to commercial software development. Custom software development is the process of designing, creating, deploying and maintaining software for a specific set of users, functions or organizations. In contrast, commercial off-the-shelf software (COTS) is designed for a broad set of requirements, allowing it to be packaged and commercially marketed and distributed.\r\n<span style=\"font-weight: bold;\">Steps in the software development process</span>\r\nDeveloping software typically involves the following steps:\r\n<ul><li><span style=\"font-weight: bold;\">Selecting a methodology</span> to establish a framework in which the steps of software development are applied. It describes an overall work process or roadmap for the project. Methodologies can include Agile development, DevOps, Rapid Application Development (RAD), Scaled Agile Framework (SAFe), Waterfall and others.</li><li><span style=\"font-weight: bold;\">Gathering requirements</span> to understand and document what is required by users and other stakeholders.</li><li><span style=\"font-weight: bold;\">Choosing or building architecture</span> as the underlying structure within which the software will operate.</li><li><span style=\"font-weight: bold;\">Developing a design</span> around solutions to the problems presented by requirements, often involving process models and storyboards.</li><li><span style=\"font-weight: bold;\">Constructing code</span> in the appropriate programming language. Involves peer and team review to eliminate problems early and produce quality software faster.</li><li><span style=\"font-weight: bold;\">Testing</span> with pre-planned scenarios as part of software design and coding — and conducting performance testing to simulate load testing on the application.</li><li><span style=\"font-weight: bold;\">Managing configuration and defects</span> to understand all the software artifacts (requirements, design, code, test) and build distinct versions of the software. Establish quality assurance priorities and release criteria to address and track defects.</li><li><span style=\"font-weight: bold;\">Deploying</span> the software for use and responding to and resolving user problems.</li><li><span style=\"font-weight: bold;\">Migrating data</span> to the new or updated software from existing applications or data sources if necessary.</li><li><span style=\"font-weight: bold;\">Managing and measuring the project</span> to maintain quality and delivery over the application lifecycle, and to evaluate the development process with models such as the Capability Maturity Model (CMM).</li></ul>\r\nThe steps of the software development process fit into application lifecycle management.\r\n<ul><li>Requirements analysis and specification</li><li>Design and development</li><li>Testing</li><li>Deployment</li><li>Maintenance and support</li></ul>\r\nSoftware development process steps can be grouped into the phases of the lifecycle, but the importance of the lifecycle is that it recycles to enable continuous improvement. For example, user issues that surface in the maintenance and support phase can become requirements at the beginning of the next cycle.\r\n<span style=\"font-weight: bold;\">Why is software development important?</span>\r\nSoftware development is important because it helps businesses differentiate themselves and be more competitive. It can improve customer experiences, bring more innovative, feature-rich products to market faster, and make operations more efficient, safe and productive.\r\nSoftware development is also important because it is pervasive.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Software_Development.png","alias":"software-development"},"593":{"id":593,"title":"Mobile Software Development","description":" Mobile app development is the act or process by which a mobile app is developed for mobile devices, such as personal digital assistants, enterprise digital assistants or mobile phones. These applications can be pre-installed on phones during manufacturing platforms, or delivered as web applications using server-side or client-side processing (e.g., JavaScript) to provide an "application-like" experience within a Web browser. Application software developers also must consider a long array of screen sizes, hardware specifications, and configurations because of intense competition in mobile software and changes within each of the platforms. Mobile app development has been steadily growing, in revenues and jobs created. A 2013 analyst report estimates there are 529,000 direct app economy jobs within the EU 28 members, 60% of which are mobile app developers.\r\nAs part of the development process, mobile user interface (UI) design is also essential in the creation of mobile apps. Mobile UI considers constraints, contexts, screen, input, and mobility as outlines for design. The user is often the focus of interaction with their device, and the interface entails components of both hardware and software. User input allows for the users to manipulate a system, and device's output allows the system to indicate the effects of the users' manipulation. Mobile UI design constraints include limited attention and form factors, such as a mobile device's screen size for a user's hand(s). Mobile UI contexts signal cues from user activity, such as location and scheduling that can be shown from user interactions within a mobile app. Overall, mobile UI design's goal is mainly for an understandable, user-friendly interface. The UI of mobile apps should: consider users' limited attention, minimize keystrokes, and be task-oriented with a minimum set of functions. This functionality is supported by mobile enterprise application platforms or integrated development environments (IDEs).\r\nMobile UIs, or front-ends, rely on mobile back-ends to support access to enterprise systems. The mobile back-end facilitates data routing, security, authentication, authorization, working off-line, and service orchestration. This functionality is supported by a mix of middleware components including mobile app server, mobile backend as a service (MBaaS), and service-oriented architecture (SOA) infrastructure. ","materialsDescription":" <span style=\"font-weight: bold;\">What is the native app development?</span>\r\nUnlike websites and web applications, native mobile apps don’t run in the browser. You need to download them from platform-specific app stores such as Apple’s App Store and Google Play. After installation, you can access each app by tapping its respective icon on the screen of your device.\r\nNative app development requires different skills and technologies than mobile website development. You don’t have to worry about browser behavior and compatibility. You can use the native features of mobile OSs to deliver the user experience and implement the functionalities of your app.\r\n<span style=\"font-weight: bold;\">What is the difference between a native mobile app and a hybrid app?</span>\r\nMobile apps have two types: native and hybrid apps. At first glance, both have similar features and design but the underlying technology is different. As the name suggests, hybrid apps are a combination of web apps and native mobile apps. You can build them using web technologies: HTML, CSS, and JavaScript. You can also upload them to app stores and users can install them as native Android or iOS applications.\r\nThe main advantages of hybrid apps are portability and the simplicity of development. You only have to write the code once and your hybrid app will run on different operating systems. You can use hybrid frameworks like Ionic and Apache Cordova to create cross-platform hybrid applications. By contrast, native mobile apps have to be written in platform-specific languages such as Java, Swift, or Objective-C.\r\nNative mobile apps can access the built-in features of smartphones such as the camera and microphone by default. If you have a hybrid app you need to rely on plugins like Cordova plugins to use the native capabilities of the user’s device.\r\nHybrid apps also depend on WebViews to render their user interfaces. WebViews are in-app browsers that allow mobile applications to access and display web content. This is how Android and iOS devices are able to run hybrid apps built with HTML, CSS, and JavaScript as native mobile applications.\r\n<span style=\"font-weight: bold;\">What are the benefits of native mobile app development?</span>\r\nAlthough hybrid apps are easier and cheaper to develop, native mobile apps have many benefits, too.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Better performance</span></span>\r\nNative mobile apps directly interact with native APIs without depending on middleware such as plugins and WebViews. As there are fewer dependencies, native mobile apps are faster and more responsive than hybrid apps. This is especially important for performance-centric apps like games and graphic-heavy applications.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Consistent look and feel</span></span>\r\nAs native mobile apps are developed using native SDKs (software development kits), their UIs look consistent with their platform. This ensures a better user experience, as there are no discrepancies between the OS and app design.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Immediate access to new features</span></span>\r\nNative mobile apps can immediately access the latest iOS or Android features. As web technologies can’t directly use native APIs, hybrid apps have to wait until there’s a plugin that supports the new feature.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Better compliance with app store guidelines</span></span>\r\nBecause of their architecture, native mobile apps comply better with app store guidelines. In 2017, Apple restricted its submission guidelines. Since then, they have begun to reject apps that rely too much on WebViews, such as Ionic View that allowed developers to test their Ionic applications. As it’s likely that app stores will continue cracking down on hybrid apps, native mobile apps are also a more future-proof investment.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Mobile_Software_Development.png","alias":"mobile-software-development"},"649":{"id":649,"title":"QA - Quality assurance","description":" <span style=\"font-weight: bold; \">Quality Assurance (QA)</span> is defined as an activity to ensure that an organization is providing the best possible product or service to customers. QA focuses on improving the processes to deliver Quality Products to the customer. An organization has to ensure, that processes are efficient and effective as per the quality standards defined for software products. Quality Assurance is popularly known as <span style=\"font-weight: bold; \">QA Testing. </span>\r\nQA establishes and maintains set requirements for developing or manufacturing reliable products. A quality assurance system is meant to increase customer confidence and a company's credibility, while also improving work processes and efficiency, and it enables a company to better compete with others.\r\nQuality assurance helps a company create products and services that meet the needs, expectations and requirements of customers. It yields high-quality product offerings that build trust and loyalty with customers. The standards and procedures defined by a quality assurance program help prevent product defects before they arise.\r\n<span style=\"font-weight: bold; \">Quality assurance utilizes one of three methods:</span>\r\n<span style=\"font-weight: bold; \">Failure testing, </span>which continually tests a product to determine if it breaks or fails. For physical products that need to withstand stress, this could involve testing the product under heat, pressure or vibration. For software products, failure testing might involve placing the software under high usage or load conditions.\r\n<span style=\"font-weight: bold; \">Statistical process control (SPC),</span> a methodology based on objective data and analysis and developed by Walter Shewhart at Western Electric Company and Bell Telephone Laboratories in the 1920's and 1930's. This methodology uses statistical methods to manage and control the production of products.\r\n<span style=\"font-weight: bold; \">Total quality management (TQM),</span> which applies quantitative methods as the basis for continuous improvement. TQM relies on facts, data and analysis to support product planning and performance reviews.\r\n<span style=\"font-weight: bold; \">Quality assurance in software.</span> Software quality assurance management (SQA) systematically finds patterns and the actions needed to improve development cycles. Finding and fixing coding errors can carry unintended consequences; it is possible to fix one thing, yet break other features and functionality at the same time.\r\nSQA software has become important for developers as a means of avoiding errors before they occur, saving development time and expenses. Even with SQA processes in place, an update to software can break other features and cause defects - commonly known as bugs.\r\n\r\n","materialsDescription":"<h1 class=\"align-center\"> Differences between Software testing and SQA services</h1>\r\n<ul><li><span style=\"font-weight: bold; \">SQA tools</span></li></ul>\r\n- Is about engineering process that ensures quality\r\n- Involve activities related to the implementation of processes, procedures, and standards.\r\n- Process focused \r\n- Preventive technique\r\n- Proactive measure\r\n- The scope of software quality testing tools applied to all products that will be created by the organization\r\n<ul><li><span style=\"font-weight: bold; \">Software Testing</span></li></ul>\r\n- Software Testing is to test a product for problems before the product goes live\r\n- Involves actives concerning verification of product Example - Review Testing\r\n- Product focused\r\n - Corrective technique\r\n- Reactive measure\r\n- The scope of Software Testing applies to a particular product being tested\r\n<h1 class=\"align-center\">Manual QA testing services Vs Automated Quality Assurance Testing</h1>\r\nSoftware testing is a huge domain, but it can be broadly categorized into two areas: manual testing and automated testing. Both of them can be used to achieve the best results, but it is always worth knowing the difference between the two. Each testing type – manual and automated – comes with its own set of advantages and disadvantages. \r\nYou can choose between manual and quality assurance testing services based on a variety of factors. These include:\r\n- Project requirements\r\n- Timeline\r\n- Budget\r\n- Expertise\r\n- Suitability<br /> \r\n<ul><li><span style=\"font-weight: bold; \">Manual Testing </span></li></ul>\r\n<span style=\"font-weight: bold; \">Exploratory Testing:</span> This scenario requires a tester’s expertise, creativity, knowledge, analytical and logical reasoning skills. With poorly written specifications and short execution time, human skills are a must to test in this scenario.\r\n<span style=\"font-weight: bold; \">Ad-Hoc Testing:</span> It is an unplanned method of testing where the biggest difference maker is a tester’s insight that can work without a specific approach.\r\n<span style=\"font-weight: bold; \">Usability Testing:</span> Here you need to check the level of user-friendliness and check the software for convenience. Human observation is a must to make the end user’s experience convenient.\r\n<ul><li><span style=\"font-weight: bold; \">Quality Assurance automation tools</span></li></ul>\r\n<span style=\"font-weight: bold; \">Repeated Execution:</span> When you need to execute a use case repeatedly, automated testing is a better option.\r\n<span style=\"font-weight: bold; \">Regression Testing:</span> Automated automated QA software is better here because the code changes frequently and the regressions can be run in a timely manner\r\n<span style=\"font-weight: bold; \">Performance:</span> You need an automated QA testing software when thousands of concurrent users are simulated at the same time. Additionally, it is a better solution for load testing.\r\n\r\n","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Quality_assurance.png","alias":"qa-quality-assurance"},"665":{"id":665,"title":"User Interface Development","description":" User interface design (UI) or user interface engineering is the design of user interfaces for machines and software, such as computers, home appliances, mobile devices, and other electronic devices, with the focus on maximizing usability and the user experience. The goal of user interface design is to make the user's interaction as simple and efficient as possible, in terms of accomplishing user goals (user-centered design).\r\nGood user interface design facilitates finishing the task at hand without drawing unnecessary attention to itself. Graphic design and typography are utilized to support its usability, influencing how the user performs certain interactions and improving the aesthetic appeal of the design; design aesthetics may enhance or detract from the ability of users to use the functions of the interface. The design process must balance technical functionality and visual elements (e.g., mental model) to create a system that is not only operational but also usable and adaptable to changing user needs.\r\nInterface design is involved in a wide range of projects from computer systems, to cars, to commercial planes; all of these projects involve much of the same basic human interactions yet also require some unique skills and knowledge. As a result, designers tend to specialize in certain types of projects and have skills centered on their expertise, whether it is a software design, user research, web design, or industrial design.","materialsDescription":" <span style=\"font-weight: bold;\">What is a Graphical User Interface?</span>\r\nThe graphical user interface, developed in the late 1970s by the Xerox Palo Alto research laboratory and deployed commercially in Apple’s Macintosh and Microsoft’s Windows operating systems, was designed as a response to the problem of inefficient usability in early, text-based command-line interfaces for the average user.\r\nGraphical user interfaces would become the standard of user-centered design in software application programming, providing users the capability to intuitively operate computers and other electronic devices through the direct manipulation of graphical icons such as buttons, scroll bars, windows, tabs, menus, cursors, and the mouse pointing device. Many modern graphical user interfaces feature touchscreen and voice-command interaction capabilities.\r\n<span style=\"font-weight: bold;\">How Does a Graphical User Interface Work?</span>\r\nGraphical user interface design principles conform to the model–view–controller software pattern, which separates internal representations of information from the manner in which information is presented to the user, resulting in a platform where users are shown which functions are possible rather than requiring the input of command codes. Users interact with information by manipulating visual widgets, which are designed to respond in accordance with the type of data they hold and support the actions necessary to complete the user’s task.\r\nThe appearance, or “skin,” of an operating system or application software may be redesigned at will due to the nature of graphical user interfaces being independent from application functions. Applications typically implement their own unique graphical user interface display elements in addition to graphical user interface elements already present on the existing operating system. A typical graphical user interface also includes standard formats for representing graphics and text, making it possible to share data between applications running under common graphical user interface design software.\r\nGraphical user interface testing refers to the systematic process of generating test cases in order to evaluate the functionality of the system and its design elements. Graphical user interface testing tools, which are either manual or automated and typically implemented by third-party operators, are available under a variety of licenses and are supported by a variety of platforms. Popular examples include: Tricentis Tosca, Squish GUI Tester, Unified Functional Testing (UFT), Maveryx, Appium, and eggPlant Functional.\r\n<span style=\"font-weight: bold;\">Graphical User Interface Examples</span>\r\nSketchpad, believed to be the first graphical computer-aided design program, was developed in 1962 by Ivan Sutherland while he was at MIT, and consisted of a light pen that enabled users to create and manipulate objects in engineering drawings in real-time with coordinated graphics.\r\nModern operating systems and graphical user interfaces are incorporated into nearly every interactive application, such as ATMs, self-service checkouts, airline self-ticketing and check-in, video games, smartphones, and desktops. Some popular, modern graphical user interface examples include Microsoft Windows, macOS, Ubuntu Unity, and GNOME Shell for desktop environments, and Android, Apple's iOS, BlackBerry OS, Windows 10 Mobile, Palm OS-WebOS, and Firefox OS for smartphones.\r\n<span style=\"font-weight: bold;\">Advantages of Graphical User Interfaces</span>\r\nThe advantage of a graphical user interface is a stark improvement in useability for the average person. The features of a graphical user interface leverage familiar metaphors, such as drag-and-drop for transferring files, and use familiar icons, such as a trash bin for deleted files, creating an environment in which computer operations are intuitive and easily mastered without any prior practice or knowledge of computing machinery or languages. Graphical user interface applications are self descriptive, feedback is typically immediate, and visual cues encourage and steer discoverability.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_User_Interface_Development.png","alias":"user-interface-development"},"795":{"id":795,"title":"Marketing - software","description":"The departments of marketing companies use marketing software to market actively on various web channels via websites, email, social networks, and to automate daily tasks. The benefit here is this type of software allows you to personalize diverse marketing campaigns.\r\nThere are main types of marketing software such as advanced marketing automation, workflow automation, and marketing intelligence. The essential features of marketing software are: analytics, social media marketing, email marketing, team collaboration, phone call tracking, lead scoring and nurturing.\r\nMarketing solutions can be used by companies of all sizes and in all sectors, and they are most welcome in small-scale teams that wish to simplify the process of running challenging marketing campaigns.","materialsDescription":" <span style=\"font-weight: bold;\">What is marketing software?</span>\r\nMarketing software refers to tools that help businesses successfully execute campaigns, tap into their target markets and convert leads into sales. Companies, regardless of size, can benefit from marketing tools, allowing them to maximize their resources and get rid of repetitive tasks. They are also very useful in expanding businesses’ reach and allow companies to focus on more pressing matters.\r\n<span style=\"font-weight: bold;\">Why Use Marketing Software?</span>\r\nWhy to use marketing software, you might ask. Whether you are looking for ways to better manage your marketing campaign, make the most out of your resources, or improve your lead nurturing process, having good marketing software is a great way to improve your operations. Here are some of the advantages of marketing software:\r\n<ul><li><span style=\"font-weight: bold;\">Reduces Tedious Tasks.</span> If we focus on the definition of marketing software, we should be able to conclude that it is meant to eliminate repetitive duties that take up a huge fraction of your daily routine. Tasks such as compiling your clients’ information, sending emails to your leads, and scheduling the posting of content can be time-consuming and while they are important, they leave you with little time to focus on tasks that demand your immediate, undivided attention. By utilizing content marketing systems, resource optimization programs, and other marketing software; you can eliminate the hassle of juggling everything manually, allowing you to delegate more important responsibilities to your staff.</li><li><span style=\"font-weight: bold;\">Streamlines Marketing Efforts.</span> Marketing campaigns require the simultaneous use of multiple channels to communicate with your target audience. Marketing software solutions are designed to help you coordinate various programs in a single, easy-to-manage platform. This means you no longer have to jump from system to system to execute your campaign seamlessly. Most of these applications also offer a full suite of tools that let you manage content, nurture leads, and measure your campaign efforts accurately, promptly, and efficiently.</li><li><span style=\"font-weight: bold;\">Improves Accountability.</span> When it comes to monitoring or analyzing lead conversions and marketing campaigns, accountability plays an important role. With the use of marketing software, you can eliminate the risk of human error and make sure you get all the statistics you need at a glance.</li><li><span style=\"font-weight: bold;\">Makes Customer Management Easier.</span> Developing relationships with potential clients at each phase of the sales process is crucial to helping your business thrive. However, this is not as simple as convincing prospects to purchase products or keeping them posted on your offers. Attracting and retaining clientele are extensive processes wherein you must pinpoint the people who will most likely need your services, listen to their concerns, and respond to them on time every time they contact you. By using a CRM software or lead nurturing system, you can effortlessly schedule email campaigns, reply to leads promptly, build a better online presence, and keep tabs on current customers.</li><li><span style=\"font-weight: bold;\">Document Progress Faster.</span> Tracking your leads, resources, content, and campaign success rates may sound easy at first, but it won’t be as simple when you are dealing with multiple campaigns, handling hundreds of customers, and creating an extensive amount of content all at the same time. Using marketing systems, your company can become more agile in its varied campaign initiatives. You can quickly create accurate progress reports that help you assess the effectiveness of your strategies and determine how to improve them in the future.</li></ul>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Marketing_software.png","alias":"marketing-software"},"862":{"id":862,"title":"Time Tracking Software","description":"Any business owner knows that they have to keep track of their employees. Their hours must be documented for payroll and, naturally, you would like to know where they are.\r\nTime-tracking software is a category of computer software that allows its employees to record time spent on tasks or projects. The software is used in many industries, including those who employ freelancers and hourly workers. It is also used by professionals who bill their customers by the hour. These include lawyers, freelancers and accountants. The tool could be used as a stand-alone or be integrated with other applications like project management software, customer support and accounting to name just a few. Time tracking software is the electronic version of the traditional paper timesheet. Tracking time can increase productivity, as businesses can track time spent on tasks and get a better understanding of what practices causes their employees to waste time. Time tracking software enhances accountability by documenting the time it takes to finish given tasks. The data is collected in a database and could be used for data analysis by the human resources department. Features offered by time-tracking software include:\r\n<ul><li>Automatic generation of invoices to the professional's clients or customers based on the time spent.</li><li>Tracking of cost overruns for fixed cost projects.</li><li>Workforce management packages that track attendance, employee absences, human resource issues, payroll, talent management and labor analytics.</li></ul>","materialsDescription":"<span style=\"font-weight: bold;\">What are the types of time-tracking software?</span>\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Timesheet.</span></span> Allows users to manually enter time spent on tasks.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Time-tracking/recording.</span></span> Automatically records activities performed on a computer.\r\nTime-tracking software can be:\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Standalone.</span></span> Used only to record timesheets and generate reports.\r\n<span style=\"font-style: italic;\">Integrated as part of:</span>\r\n<ul><li>Accounting systems, e.g. timesheet data fed directly to company accounts.</li><li>Billing systems, e.g. to generate invoices, especially for contractors, lawyers, etc.</li><li>Project management systems, e.g. timesheet data used by project management software to visualize the effort being spent on projects or tasks.</li><li>Payroll systems, e.g. to pay employees based on time worked.</li><li>Resource scheduling, e.g. bi-directional integration allows schedulers to schedule staff to tasks, which, once complete, can be confirmed and converted to timesheets.</li></ul>\r\n<span style=\"font-weight: bold;\">What is timesheet software?</span>\r\nTimesheet software is software used to maintain timesheets. It was popularized when computers were first introduced to the office environment with the goal of automating heavy paperwork needs for big organizations. Timesheet software allows documenting time spent performing different tasks.\r\nWhen used within companies, employees enter the time they've spent on tasks into electronic timesheets. These timesheets can then be approved or rejected by supervisors or project managers.\r\nSince 2006, timesheet software has been moving to mobile platforms (smartphones, tablets, smartwatches, etc.) enabling better tracking of employees whose work involves multiple locations.\r\n<span style=\"font-weight: bold;\">What is a time-tracking/recording software?</span>\r\nTime-tracking/recording software automates the time-tracking process by recording the activities performed on a computer and the time spent on each of them. This software is intended to be an improvement over timesheet software. Its goal is to offer a general picture of computer usage. Automatic time-tracking/recording software records and shows the usage of applications, documents, games, websites, etc.\r\nWhen used within companies, this software allows monitoring the productivity of employees by recording the tasks they perform on their computers. It can be used to help fill out timesheets.\r\nWhen used by freelancers, this software helps to create reports for clients (e.g. timesheets and invoices) or to prove work was done.\r\n<span style=\"font-weight: bold;\">What are the time-tracking methods?</span>\r\nThere are several ways companies track employee time using time tracking software.\r\n<span style=\"font-style: italic;\">Durational.</span> Employees enter the duration of the task but not the times when it was performed.<br /><span style=\"font-style: italic;\">Chronological.</span> Employees enter start and end times for the task.\r\n<span style=\"font-style: italic;\">Automatic.</span> The system automatically calculates time spent on tasks or whole projects, using a connected device or a personal computer and user input using start and stop buttons. Users can retrieve logged tasks and view the duration or the start and stop times.\r\n<span style=\"font-style: italic;\">Exception-based.</span> The system automatically records standard working hours except for approved time off or LOA.\r\n<span style=\"font-style: italic;\">Clock-in clock-out.</span> Employees manually record arrival and departure times.\r\n<span style=\"font-style: italic;\">Monitoring.</span> The system records the active and idle time of employees. It might also record screen captures.<br /><span style=\"font-style: italic;\">Location-based.</span> The system determines the working status of employees based on their location.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/time.png","alias":"time-tracking-software"}},"branches":"Information Technology","companySizes":"More than 2000 Employees","companyUrl":"https://www.intuit.com/","countryCodes":["USA"],"certifications":[],"isSeller":true,"isSupplier":true,"isVendor":true,"presenterCodeLng":"","seo":{"title":"Intuit","keywords":"","description":" Intuit is a mission-driven, global financial platform company that gives everyone the opportunity to prosper. We’re the proud makers of TurboTax, QuickBooks, and Mint. Our products and services help more than 50M people around the world put more money in the","og:title":"Intuit","og:description":" Intuit is a mission-driven, global financial platform company that gives everyone the opportunity to prosper. We’re the proud makers of TurboTax, QuickBooks, and Mint. Our products and services help more than 50M people around the world put more money in the","og:image":"https://old.roi4cio.com/uploads/roi/company/Intuit_Logo.png"},"eventUrl":"","vendorPartners":[],"supplierPartners":[],"vendoredProducts":[{"id":5764,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/tsheets_logo.png","logo":true,"scheme":false,"title":"TSheets","vendorVerified":0,"rating":"1.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":0,"alias":"tsheets","companyTitle":"Intuit","companyTypes":["supplier","vendor"],"companyId":8636,"companyAlias":"intuit","description":"<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Time tracking software that simplifies your business</span></span>\r\n<span style=\"font-weight: bold;\">Time Tracking</span>\r\nEmployees can clock in or out with just one click. 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It was popularized when computers were first introduced to the office environment with the goal of automating heavy paperwork needs for big organizations. Timesheet software allows documenting time spent performing different tasks.\r\nWhen used within companies, employees enter the time they've spent on tasks into electronic timesheets. These timesheets can then be approved or rejected by supervisors or project managers.\r\nSince 2006, timesheet software has been moving to mobile platforms (smartphones, tablets, smartwatches, etc.) enabling better tracking of employees whose work involves multiple locations.\r\n<span style=\"font-weight: bold;\">What is a time-tracking/recording software?</span>\r\nTime-tracking/recording software automates the time-tracking process by recording the activities performed on a computer and the time spent on each of them. This software is intended to be an improvement over timesheet software. Its goal is to offer a general picture of computer usage. Automatic time-tracking/recording software records and shows the usage of applications, documents, games, websites, etc.\r\nWhen used within companies, this software allows monitoring the productivity of employees by recording the tasks they perform on their computers. It can be used to help fill out timesheets.\r\nWhen used by freelancers, this software helps to create reports for clients (e.g. timesheets and invoices) or to prove work was done.\r\n<span style=\"font-weight: bold;\">What are the time-tracking methods?</span>\r\nThere are several ways companies track employee time using time tracking software.\r\n<span style=\"font-style: italic;\">Durational.</span> Employees enter the duration of the task but not the times when it was performed.<br /><span style=\"font-style: italic;\">Chronological.</span> Employees enter start and end times for the task.\r\n<span style=\"font-style: italic;\">Automatic.</span> The system automatically calculates time spent on tasks or whole projects, using a connected device or a personal computer and user input using start and stop buttons. 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Features offered by time-tracking software include:\r\n<ul><li>Automatic generation of invoices to the professional's clients or customers based on the time spent.</li><li>Tracking of cost overruns for fixed cost projects.</li><li>Workforce management packages that track attendance, employee absences, human resource issues, payroll, talent management and labor analytics.</li></ul>","materialsDescription":"<span style=\"font-weight: bold;\">What are the types of time-tracking software?</span>\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Timesheet.</span></span> Allows users to manually enter time spent on tasks.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Time-tracking/recording.</span></span> Automatically records activities performed on a computer.\r\nTime-tracking software can be:\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Standalone.</span></span> Used only to record timesheets and generate reports.\r\n<span style=\"font-style: italic;\">Integrated as part of:</span>\r\n<ul><li>Accounting systems, e.g. timesheet data fed directly to company accounts.</li><li>Billing systems, e.g. to generate invoices, especially for contractors, lawyers, etc.</li><li>Project management systems, e.g. timesheet data used by project management software to visualize the effort being spent on projects or tasks.</li><li>Payroll systems, e.g. to pay employees based on time worked.</li><li>Resource scheduling, e.g. bi-directional integration allows schedulers to schedule staff to tasks, which, once complete, can be confirmed and converted to timesheets.</li></ul>\r\n<span style=\"font-weight: bold;\">What is timesheet software?</span>\r\nTimesheet software is software used to maintain timesheets. It was popularized when computers were first introduced to the office environment with the goal of automating heavy paperwork needs for big organizations. Timesheet software allows documenting time spent performing different tasks.\r\nWhen used within companies, employees enter the time they've spent on tasks into electronic timesheets. These timesheets can then be approved or rejected by supervisors or project managers.\r\nSince 2006, timesheet software has been moving to mobile platforms (smartphones, tablets, smartwatches, etc.) enabling better tracking of employees whose work involves multiple locations.\r\n<span style=\"font-weight: bold;\">What is a time-tracking/recording software?</span>\r\nTime-tracking/recording software automates the time-tracking process by recording the activities performed on a computer and the time spent on each of them. This software is intended to be an improvement over timesheet software. Its goal is to offer a general picture of computer usage. Automatic time-tracking/recording software records and shows the usage of applications, documents, games, websites, etc.\r\nWhen used within companies, this software allows monitoring the productivity of employees by recording the tasks they perform on their computers. It can be used to help fill out timesheets.\r\nWhen used by freelancers, this software helps to create reports for clients (e.g. timesheets and invoices) or to prove work was done.\r\n<span style=\"font-weight: bold;\">What are the time-tracking methods?</span>\r\nThere are several ways companies track employee time using time tracking software.\r\n<span style=\"font-style: italic;\">Durational.</span> Employees enter the duration of the task but not the times when it was performed.<br /><span style=\"font-style: italic;\">Chronological.</span> Employees enter start and end times for the task.\r\n<span style=\"font-style: italic;\">Automatic.</span> The system automatically calculates time spent on tasks or whole projects, using a connected device or a personal computer and user input using start and stop buttons. 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