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Updated in [March 06th, 2023]
The Autodesk Certified Professional: AutoCAD for Design and Drafting Exam Prep course provides an overview of the skills needed to pass the Autodesk Certified Professional: AutoCAD for Design and Drafting exam. The course covers topics such as drawing and organizing objects, drawing with accuracy, advanced editing functions, layouts, printing, and outputs, annotation techniques, and reusable content and drawing management. Participants will learn how to create drawing objects, manage layers, apply object snaps, and work with the User Coordinate System. They will also gain an understanding of exam topics such as layouts and viewports, output formats, and drawing management. Additionally, the course covers markup tools, hatch and fill, text, tables, multileaders, dimensioning, and more. Upon completion of the course, participants will be prepared to take the Autodesk Certified Professional: AutoCAD for Design and Drafting exam.
[Applications]
Completing the Autodesk Certified Professional: AutoCAD for Design and Drafting Exam Prep course provides individuals with the knowledge and skills necessary to pass the Autodesk Certified Professional: AutoCAD for Design and Drafting exam. After completing the course, individuals can apply their knowledge and skills to their professional environment by using the AutoCAD software to create drawing objects, manage layers, apply object snaps, and work with the User Coordinate System. They can also edit objects and apply rotation and scale, array techniques, grip editing, offsets, fillet and chamfer, and trim and extend. Additionally, they can use markup tools, hatch and fill, text, tables, multileaders, dimensioning, and more. To further their learning journey, individuals can take advantage of Autodesk’s additional learning resources.
[Career Paths]
1. CAD Designer: CAD Designers use AutoCAD to create detailed technical drawings for a variety of industries, such as architecture, engineering, and manufacturing. They are responsible for creating accurate drawings that meet the specifications of the project. As technology advances, CAD Designers are increasingly using 3D modeling software to create more complex designs.
2. CAD Drafter: CAD Drafters use AutoCAD to create detailed technical drawings for a variety of industries, such as architecture, engineering, and manufacturing. They are responsible for creating accurate drawings that meet the specifications of the project. As technology advances, CAD Drafters are increasingly using 3D modeling software to create more complex designs.
3. CAD Technician: CAD Technicians use AutoCAD to create detailed technical drawings for a variety of industries, such as architecture, engineering, and manufacturing. They are responsible for creating accurate drawings that meet the specifications of the project. As technology advances, CAD Technicians are increasingly using 3D modeling software to create more complex designs.
4. CAD Manager: CAD Managers are responsible for overseeing the use of AutoCAD in an organization. They are responsible for ensuring that the software is used correctly and efficiently, and that the drawings produced are accurate and meet the specifications of the project. As technology advances, CAD Managers are increasingly using 3D modeling software to create more complex designs.
[Education Paths]
1. Bachelor of Science in Computer Aided Design (CAD): This degree program focuses on the use of computer-aided design (CAD) software to create technical drawings and 3D models. Students learn how to use CAD software to create detailed drawings, analyze designs, and create 3D models. They also learn about the principles of engineering, mathematics, and physics that are used in the design process. This degree is becoming increasingly popular as more companies are relying on CAD software to design products and services.
2. Master of Science in Computer Aided Design (CAD): This degree program builds on the knowledge gained in a Bachelor of Science in Computer Aided Design (CAD). Students learn advanced techniques for creating 3D models and technical drawings. They also learn about the principles of engineering, mathematics, and physics that are used in the design process. This degree is becoming increasingly popular as more companies are relying on CAD software to design products and services.
3. Certificate in Computer Aided Design (CAD): This certificate program focuses on the use of computer-aided design (CAD) software to create technical drawings and 3D models. Students learn how to use CAD software to create detailed drawings, analyze designs, and create 3D models. They also learn about the principles of engineering, mathematics, and physics that are used in the design process. This certificate is becoming increasingly popular as more companies are relying on CAD software to design products and services.
4. Associate of Applied Science in Computer Aided Design (CAD): This degree program focuses on the use of computer-aided design (CAD) software to create technical drawings and 3D models. Students learn how to use CAD software to create detailed drawings, analyze designs, and create 3D models. They also learn about the principles of engineering, mathematics, and physics that are used in the design process. This degree is becoming increasingly popular as more companies are relying on CAD software to design products and services.
Course Syllabus
Advanced Drawing, Organize Objects, and Drawing with Accuracy
In week 1, we'll cover the advanced drawing techniques covered on the exam, including polylines, arcs, splines, and polygons and working with rays, xlines, and multilines. You’ll also learn how to select, isolate, hide, and remove objects, manage layers, control the User Coordinate System (UCS), and work with multi-functional grips for editing. Layouts, printing, outputs, annotation techniques, reusable content, and drawing management
In week 2, we'll begin with an overview of layouts and outputting drawings, including using the Page Setup Manager, working with viewports, and creating eTransmit packages. You’ll learn about several annotation techniques and discover the benefits of working with revision clouds, multileaders, and dimensions. Finally, you’ll discover some best practices for reusing content such as blocks and working with external reference and underlay files.