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© 2026 Midwest Tape, LLC. All rights reserved. Privacy Policy | Terms of Use
  1. Navigate Home
  2. Television
  3. Do-It-Yourself Engineering

TELEVISION

Do-It-Yourself Engineering

Series: Great Courses
5
(19)
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Episodes
24
Rating
TVPG
Year
2017
Language
English
Publisher
The Great Courses

About

Taught by Professor Stephen Ressler of West Point, this course conducts you through 17 thrilling engineering projects that you can build at home - from a suspension bridge across a small stream to a low-altitude sounding rocket. Dr. Ressler walks you through the entire process, from design to build to test, showing you how to think like an engineer in approaching any problem.

Related Subjects

  • Educational
  • Science

Episodes

1. Why DIY Engineering?

30m

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Follow the seven steps in the engineering design process to create a golf ball launcher that can hit a target ten feet away. Apply the principle of conservation of energy to select the right steel spring for the job. After building and testing the launcher, consider the joys of do-it-yourself projects and the insights they provide about fundamental engineering concepts.

2. Exploring the Science of Structure

30m

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Get started on DIY project number two: use cardboard to build a tower capable of supporting a 100-pound gravity load and a 10-pound lateral load simultaneously. This exercise closely replicates problems faced by real-world skyscraper designers. In this lesson, use vector math to analyze the forces exerted on each structural element of the building.

3. Design and Build a Cardboard Tower

30m

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Now that you understand the forces your cardboard tower must withstand, conduct a series of compressive and tensile strength experiments to determine the size and shape of your structure's beams, columns, and braces. After completing your design, build the tower using ordinary wood glue and simple tools. Then pile on concrete blocks and marvel at the strength of your creation.

4. Bridging with Beams

30m

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Design and build an 8-foot beam bridge capable of carrying a swarm of pedestrians across a small stream. First, consider three alternative concepts, with beams made of identical wood, but of different configurations. Then develop these designs, analyzing their stresses and failure modes before selecting the optimum, building it, and inviting your friends onto the span.

5. Make a Suspension Bridge

30m

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Elegant and efficient, the suspension bridge is your next DIY effort. Span the same small stream as in the previous project, but support the deck with suspension cables draped between two 5-foot-tall towers. Analyze the flow of forces through the structural system before designing each element. A 3D computer model helps you plan this impressive project.

6. Design a Concrete Sailboat

30m

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It may sound suspiciously like a lead balloon, but a concrete boat can be made to float. Your engineering challenge is to create a concrete sailboat that can operate safely in 10-mph winds. Hydrostatics comes into play in designing a hull with sufficient buoyancy, and aerodynamics enters the picture in designing a sail that doesn't cause too much heeling in the wind.

7. Set Sail!

30m

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Build your concrete sailboat. Consider the enhanced strength of a concrete shell that has been formed into a curved shape - a feature exploited in many buildings. Then apply basic aerodynamics and vector mechanics to determine how the wind propels a sailboat - sailing with the wind, into the wind, and at right angles to the wind. Try out these points of sail with your model.

8. Make a Radio-Controlled Blimp

30m

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Who has not tied a paper cup to a helium party balloon to make a primitive airship? In this lesson, design and build a far more advanced version: a radio-controlled blimp that you can remotely pilot around your house. Calculate the volume of helium required to lift your blimp and its control unit, borrowed from a toy tank. Use two motor-driven propellers for thrust and control.

9. Exploring Aerodynamics

30m

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Start your project on fixed-wing flight the way the Wright brothers did: by building a wind tunnel. Use it to test different wing shapes at varying angles of attack, exploring the phenomena of lift, drag, and stalling. Your goal is to design a wing appropriate for a low-speed model plane, powered only by a few strands of rubber and flying without remote control.

10. Build a Model Airplane

30m

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Dig deeper into aerodynamic science so you can choose an airfoil shape and appropriate wingspan, aspect ratio, fuselage length, and stabilizer dimensions for your model plane. Pay special attention to aerodynamic stability and such factors as the dihedral angle of the wings, noting these features on full-size aircraft. Then build the airframe, using wood, tissue paper, and metal wire.

Extended Details

  • SeriesGreat Courses
  • Closed CaptionsEnglish

Artists

Stephen ResslerWriter
Stephen ResslerActor