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SolidWorks Step-by-Step Self-Study Guides
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Lesson 1 | Parts
Create and modify a 3D part. Explore 2D sketching and 3D features.
Lesson 2 | Assemblies
Create and modify a 3D assembly. Reinforce learning by designing a new part.
Lesson 3 | 2D Drawings
Create and modify a 2D drawing with two sheets. Insert views and dimensions for the part and assembly.
30 Additional Tutorials
Tutorials allow students to explore additional modeling techniques and manufacturing applications.
SolidWorks Teacher and Student Guide
Guide contains additional projects for students to apply what they have learned.
CO2 Car Design Project
Allows students to design, analyze and build a CO2 Car.
Trebuchet Design Project
Allows students to explore additional analysis techniques in stress, motion, and flow applications.
SolidWorks Teacher Blog
Define different initial temperatures for assembly components and apply thermostat-controlled heat power for a transient thermal study.
Learn the basic steps of design analysis by applying material, forces, and restraints. Assess the safety of a design, evaluate the results, and document the project.
SolidWorks Simulation Teacher and Student Guides
Allow students to explore additional analysis techniques in stress, motion, and flow applications.
SolidWorks Simulation Tutorials, Teacher and Student Guides
Understanding the design process by utilizing analysis tools for stress, motion, and fluid flow validations.
Select from thousands of parts and assemblies developed by industrial suppliers and customers. Select from thousands of fasteners from SolidWorks Toolbox.
Mountain Board Design Project
The Mountain Board Design Project is a competency-based learning activity that takes your students through an interactive design project.
Seabotix SolidWorks Design Project
Explore SolidWorks different modeling capabilities in parts, assemblies, and drawings following step-by-step instructions, as students work on a real-life project.
Seabotix SolidWorks Simulation Design Project
Follow step-by-step instructions to investigate temperature distribution, stress, drop test, fatigue, optimization, motion, and flow analysis as students work on a real-life project.
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