Hardware is the set of physical or material elements that make up a computer or computer system. Your workshop attendees will learn about this concept and much more, especially if you use this creative template that we have designed to help you prepare your material. Download it and discover the structure that will help you explain the theory, the main features of the hardware, give valuable tips and propose practical exercises. In addition, you will be able to personalize different resources with your information and create the best learning experience.

I'm trying to build two computers specifically for giving PowerPoint presentations. These files often times are presented on very high resolution screens (4680 x 1080 for my next one). They also oven have very large image files that animate around the screen, or dozens of smaller animations happening simultaneously.


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Mid-range computers with quad-core processors and decent dedicated graphics cards running these presentations often experience judder, animation skips, or other on-screen issues, which is why I'm trying to decide what parts need the biggest investment.

I have a decent budget, but it's not unlimited. I'm trying to figure out if PowerPoint is GPU heavy, CPU heavy, somewhere in the middle, if RAM is an important player, or if it depends on the presentation.

1. Download Focusky presentation software and install in your computer(supports both Windows and Mac device). The presentation software contains 1,000+ free presentation templates for nearly all topics and industries.

These hardware devices work together to support the teacher's presentation by allowing her to create and display visuals, communicate effectively with the students, and create an interactive learning environment.

Firstly, a computer or laptop with sufficient processing power and memory is essential for creating and displaying your presentation slides. Ensure that it can handle the presentation software smoothly to avoid any interruptions during your session. Next, consider using a projector or a large screen display to project your slides, ensuring that all students can easily see the content from anywhere in the classroom.

To maintain control and engagement during the presentation, a wireless presenter or clicker will be beneficial. This device allows you to navigate through slides seamlessly, enabling you to focus on interacting with your students rather than being tied to the computer.

I was writing a presentation which needed a mixture of computing hardware. There is a Libre Office extension called VRT Network equipment which you can install and have a gallery of hardware, from scanners, printers, firewalls, routers to laptops and tablets and mobile phones.

CHESS is also the organization responsible for implementing year-round Consolidated Buys (CBs) of desktop and notebook computers, as well as printers for the Army at the enterprise level. The CB process is the most cost-effective approach to fulfilling user requirements for these products. The CB directly supports the Army OCIO and G6 strategy for acquiring products which are fully compliant with federal desktop computing regulations, as well as DOD and Army security and interoperability standards.

Reduce the number of by-letter and by-word animations. By-letter and by-word animations apply a behavior or effect that moves text (by-word or by-letter) onto a slide to advance your presentation. For example, use an animation only for the title of a slide, instead of for every bullet in the slide.

Use hardware graphics acceleration Click the File tab. Click Options, click Advanced in the left pane of the PowerPoint Options dialog box, and then under Display, ensure the Disable hardware graphics acceleration check box is not selected.

A graphics accelerator is a type of video adapter that contains its own processor to boost performance levels. These processors are specialized for computing graphical transformations, so they achieve better results than the general-purpose CPU used by your computer. These adapters free your computer's CPU to execute other commands while the graphics accelerator handles graphics computations.


INT2311: Circuit Analysis I: Basic circuit and troubleshooting techniques for DC circuits with an emphasis on industrial applications. Topics include the concepts of resistance, inductance, capacitance, power, nodal and mesh analysis, network theorem, RL, RC, and RCL analyses, and applications of operational amplifiers. Conventional and computer analysis techniques are utilized. Two lecture hours and two laboratory hours per week.


INT3520: Digital Systems: An introductory course on the basic tools for the analysis and troubleshooting of combinational and sequential logic as employed in digital computers and control systems. Topics include number systems, Boolean algebra, logic gates, combinational elements and circuits, synchronous sequential circuits, memory and storage devices, and programmable logic devices. Three lecture hours and two laboratory hours per week.


INT3630: Microprocessors: Introduction to the applications and development of software and hardware for effective use in interfacing microprocessor-based systems. Software topics include software architecture, software development tools and assembly language programming. Hardware topics include microprocessor architecture, bus timing and structure, memory, input-output ports interfacing, Interrupt handling, clock generation and timing. Three lecture hours and two laboratory hours per week. Prerequisite: INT 3520. Equivalent to TAG OET004.

INT4220: VLSI Design and Fabrication: VLSI (Very Large Scale Integrated) Systems Design and Fabrication (1, II, III, on-demand; 3) enables the design and analysis of full custom integrated digital systems, incorporated into a VLSI chip deploying design strategies for low power and high performance; in the context of the small group design team. Students will design and create components packaged into a full custom chip implemented in a clean room class of 1000 or 100 particles per cubic meter environment. Hands-on experience in the operation of a microfabrication laboratory will be provided. Encapsulation of design experience will be assessed through a detailed report and a short presentation to the class.

INT4230: Manufacturing Science and ERP: INT 4xxx. Manufacturing Science and Enterprise Resource Planning (I, II, III, On-demand; 3) Imparts the knowledge threads and competencies needed to outpace both change and the competition and enforce the development and implementation of next-generation advanced manufacturing sciences & technologies and supply chain best practices, through a culture of creativity, innovation, cost reduction, quality and safety enhancement, backed by research and scale-up introduction of new processes and products. The course teaches the skills needed to plan the resources of the enterprise to enable new materials, methods, systems, products, and processes to be realized. Emphasis is placed on the core fundamentals of effectively managing the organization's local and global supply chain logistics: to get the right product, at the right time, in the right place, in the right quantity, in the right condition, at the right price, to the right customer using the right array of enabling hardware and software advanced technologies. Prerequisite: INT2xxx: Statistical Process Control for Semiconductors.

Research, design, develop, or test computer or computer-related equipment for commercial, industrial, military, or scientific use. May supervise the manufacturing and installation of computer or computer-related equipment and components.

Presentation was designed to work well with generic PC hardware. Hardware requirements really depend on the experiment. Some experiments may run acceptably even on very old systems. Other experiments may require a lot of RAM or a current video card. In addition, some hardware may not work correctly because the drivers for that hardware do not correctly implement the interfaces Presentation requires.

Low cost: GeForce GTS [current model, ex. 450] AGP/PCI-Express 2.0 (NOT PCI) with 1GB or higher (between $50 and $100)High performance: GeForce GTX [current model, ex. 580] PCI-Express 2.0 (NOT PCI) with 1536MB or higher (between $150 and $350)Video card technology is advancing at a rapid pace. The information in this page goes out of date quickly. These rapid changes mean that you can get a really nice video card fairly inexpensively as long as you aren't out to get the very latest and greatest. Radeon (ATI) and GeForce (nVidia) are the two major forces in the video card market. They both usually have fans on the card to cool the video chips. On the very high end cards, these fans can be quite noisy. For the purposes of running Presentation, a much less expensive and less noisy card is more than adequate, unless you plan on displaying 3D scenes with extremely dense meshes. There are fanless cards available fully capable of running Presentation. As of this writing, a GeForce GTS 450 1GB is a good choice for the cost-conscious. Almost all cards have dual display outputs, which is good for running an experiment on one screen while watching the status screen on the other. The equivalent in performance to the GeForce line is probably one of the Radeon 5000 series cards. The only disadvantage of going with Radeon over GeForce is that nVidia, the makers of the GeForce, write their own drivers to support the 3d shutter glasses while ATI, the makers of the Radeon, do not. This is an advantage only for people who want to use stereo 3d shutter glasses. If you use the Radeon with shutter glasses, you have to use 3rd party drivers, which might not be as optimized and might be buggy.


AGP vs. PCI-Express 2.0: There is a new slot type available which outshines AGP. PCI-Express 2.0 x16 slots are the best you can get, but you might have to upgrade your motherboard to get it. PCI-Express 2.0 is not to be confused with the outdated PCI slot (the two are not compatible). Given the choice, you should ALWAYS choose PCI-Express 2.0. There is massive support in the video card market for PCI-Express 2.0 and it WILL improve streaming video and 3D performance. PCI-Express 2.0 cards cost no more than AGP video cards. Remember: before buying a PCI-Express 2.0 video card, make sure your motherboard supports it. Also, don't buy a new motherboard/computer without at least one PCI-Express 2.0 x16 slot for video.


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