BSR464 Computer-Aided Design UITM Assignment Sample Malaysia

The BSR464 Computer-Aided Design course provides a comprehensive introduction to design technology. Students will learn how to use a variety of powerful computer software tools to create three-dimensional solid models suitable for fabrication. Additionally, 2D drawings and documents can be generated from 3D models.

Along with CAD software usage, students will also gain an understanding of product design principles commonly used in the industry. By taking the BSR464 course, students have the opportunity to gain valuable skill sets that can make them competitive in both industry and academic circles.

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Get assignment samples for The BSR464 Computer-Aided Design course provides assignment samples for the BSR464 Computer-Aided Design course. Our team of experts can help you gain valuable insight into the different areas of design that are covered in the class. Our samples will provide students with step-by-step guidance on how to create models, apply materials, render images, and prepare documents through CAD software. Additionally, our samples will also guide students in their exploration of product design principles and their application to the development of 3D models.

The upcoming section will cover several assignment outlines:

Assignment Outline 1: Identify and recognize information technology and its applications in building industry.

Information technology (IT) has revolutionized the building industry in many ways. Some of the key applications of IT in the building industry are:

  1. Building Information Modeling (BIM): BIM is a digital representation of a building that allows architects, engineers, and contractors to work collaboratively and efficiently throughout the design, construction, and operation phases of a project. BIM software can be used to create 3D models that contain all the information needed to build and maintain a building, including data on materials, equipment, and maintenance schedules.
  2. Virtual and Augmented Reality: Virtual and Augmented Reality technologies are being increasingly used in the building industry to visualize and simulate building designs. These technologies can help architects, engineers, and contractors to visualize and experience building designs in a more immersive and realistic way, allowing them to identify potential issues and make design changes more efficiently.
  3. Cloud Computing: Cloud computing technology has enabled the building industry to store and access large amounts of data and information on a secure and scalable platform. This has made it possible for building professionals to collaborate and share information more effectively, regardless of their location or device.
  4. Internet of Things (IoT): IoT is the interconnectivity of devices and sensors that can be embedded in building systems to monitor and control their performance. IoT devices can be used to monitor energy consumption, temperature, humidity, and other parameters, allowing building owners and operators to optimize building performance and reduce energy costs.
  5. Artificial Intelligence (AI): AI technology is being increasingly used in the building industry to analyze data and optimize building performance. AI algorithms can be used to analyze data on building performance and identify areas where improvements can be made, such as reducing energy consumption or optimizing HVAC systems.

Overall, IT has become an essential component of the building industry, enabling professionals to design, build, and operate buildings more efficiently, sustainably, and cost-effectively.

Assignment Outline 2: Build technical skills to use computer aided software in constructing technical drawing.

To build technical skills to use computer-aided software in constructing technical drawings, you can follow these steps:

  1. Choose a software: There are various software options available for creating technical drawings such as AutoCAD, SolidWorks, SketchUp, etc. Choose the software that suits your requirements and budget.
  2. Learn the software: Once you have chosen the software, start learning its interface, tools, and commands. You can either join a course or use online tutorials to learn the software.
  3. Practice: To become proficient in using the software, practice regularly by creating technical drawings of different objects or structures.
  4. Understand technical drawing principles: It is important to understand technical drawing principles such as dimensions, scales, and projections to create accurate and precise drawings.
  5. Learn shortcut commands: Most software comes with a set of shortcut commands that can speed up your work. Learn these commands to work efficiently.
  6. Collaborate: Collaborate with other professionals in your field to learn new techniques and improve your skills.
  7. Stay updated: Keep up-to-date with the latest advancements in the software and the field of technical drawing.

By following these steps, you can build technical skills to use computer-aided software in constructing technical drawings.

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Assignment Outline 3: Produce building drawings, presentation using related CAD software or multimedia tools.

  1. AutoCAD: This is a widely used CAD software that can be used to create 2D and 3D building drawings.
  2. SketchUp: This is another popular CAD software that is widely used for architectural design and can be used to create 3D models of buildings.
  3. Revit: This is a BIM (Building Information Modeling) software that is widely used by architects and engineers to design and analyze building structures.
  4. Adobe Creative Suite: This is a suite of multimedia tools that can be used to create presentations, including Adobe Photoshop for image editing, Adobe Illustrator for vector graphics, and Adobe Premiere Pro for video editing.
  5. Microsoft PowerPoint: This is a widely used presentation software that can be used to create professional presentations with a range of multimedia elements.

It is important to note that creating accurate and detailed building drawings and presentations requires a high level of expertise and training, so it is recommended to seek the assistance of a professional architect or designer if you are not experienced in using these tools.

Assignment Outline 4: Apply of CAD technology in addressing issues of basic drawings and editing operations, objects, instancing and transformation, and the current development in CAD.

CAD technology, or computer-aided design technology, has revolutionized the way engineers and designers create and edit technical drawings. Here are some ways in which CAD technology is used to address common issues in basic drawings and editing operations, objects, instancing, and transformation:

  1. Basic Drawings: CAD software allows designers to create precise technical drawings, including 2D and 3D models. This is accomplished through a combination of intuitive user interfaces, powerful drafting tools, and automated workflows. CAD software helps to ensure that drawings are accurate and consistent, reducing errors and saving time.
  2. Editing Operations: CAD software allows designers to make changes to their drawings quickly and easily. With a variety of editing tools available, including scaling, rotating, and mirroring, designers can quickly adjust their designs to meet changing requirements.
  3. Objects: CAD software provides designers with a range of pre-built objects and symbols, such as pipes, valves, and electrical components. These objects can be easily incorporated into designs, helping to save time and improve accuracy.
  4. Instancing: CAD software allows designers to create instances of objects and symbols, which can be repeated throughout a design. This helps to reduce errors and save time, as changes made to one instance are automatically applied to all instances of that object.
  5. Transformation: CAD software allows designers to transform objects and symbols, changing their size, shape, and orientation. This can be done manually or through automated workflows, helping to save time and improve accuracy.

Recent developments in CAD technology include the use of cloud-based software, which allows designers to access their designs from anywhere with an internet connection. Additionally, advances in artificial intelligence and machine learning are being used to improve CAD workflows, automating tasks such as object recognition and dimensioning. Finally, virtual and augmented reality technologies are being integrated into CAD software, allowing designers to visualize their designs in real-world environments.

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