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You will receive instruction from industry professionals who bring years of architecture, engineering, and CAD consulting experience.
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You will complete two major group projects simulating actual client engagements.
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You will generate work for your professional portfolio showcasing your skills with 3D renderings, title blocks, and complete drawing sets.
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In addition to your technical skills, you will build confidence in your soft skills, including communication, collaboration, consulting, and project planning.
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You will gain exposure to AI, Navisworks Freedom, and custom scripting, equipping you with a competitive edge in both job readiness and professional growth.
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You will learn how real-world professionals take a layout from a concept to a complete 3D presentation package.
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Spotlight your AutoCAD 3D skills through an official digital badge from Kennesaw State University that can be displayed on your LinkedIn page. You will also earn a certificate of completion from Kennesaw State University.
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You will graduate with the skills and confidence to pursue entry-level design roles, consulting work, or advance your career with your current employer.
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Demonstrate how to work with advanced text objects and tables
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Manage and organize 2D drawings using layers
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Show how to create, customize, and publish sheet sets
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Control how elements display in a 3D view using the visual styles
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Change the origin and alignment of the User Coordinate System (UCS) using multifunctional grips
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Create and edit advanced 3D models using solid, surface, and mesh tools
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Attach and manage point clouds
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Set up a rendering with materials, lighting, and cameras for high-quality visualizations
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Use Xrefs, custom templates, CAD standards files, and file structures to organize complex projects
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Transition a 2D layout into a fully developed 3D design and presentation package
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Export and navigate 3D models to Navisworks Freedom for basic coordination and review
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Use AI tools to generate LISP routines, streamline workflows, and solve modeling problems
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Generate a .STL file of a 3D model for printing