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Introduction to Engineering Design. 06-07. Principles of Engineering Digital Electronics. 07-08. Engineering Design and Development. 08-09. Project Based Learning. ACTIVITIES. PROJECTS AND PROBLEMS. Overview of three courses. An in-depth look at a project.
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Introduction to Engineering Design 06-07 Principles of Engineering Digital Electronics 07-08 Engineering Design and Development 08-09
Project Based Learning ACTIVITIES PROJECTS AND PROBLEMS
Overview of three courses. • An in-depth look at a project. • Relationship to the new Oregon Diploma requirements.
Principles of Engineering • Engineering Field Report • Mechanisms • Electrical Systems • Control Systems • Forces in Static Equilibrium • Strength of Materials • Trajectory Motion Formal written report. Oral Presentation.
Principles of Engineering • Engineering Field Report • Mechanisms • Electrical Systems • Control Systems • Forces in Static Equilibrium • Strength of Materials • Trajectory Motion Formal written report. Oral Presentation. Rube Goldberg device. Mouse trap car.
Principles of Engineering • Engineering Field Report • Mechanisms • Electrical Systems • Control Systems • Forces in Static Equilibrium • Strength of Materials • Trajectory Motion Formal written report. Oral Presentation. Rube Goldberg device. Mouse trap car. Marble sorter.
Principles of Engineering • Engineering Field Report • Mechanisms • Electrical Systems • Control Systems • Forces in Static Equilibrium • Strength of Materials • Trajectory Motion Formal written report. Oral Presentation. Rube Goldberg device. Mouse trap car. Marble sorter. Balsa wood crane.
Principles of Engineering • Engineering Field Report • Mechanisms • Electrical Systems • Control Systems • Forces in Static Equilibrium • Strength of Materials • Trajectory Motion Formal written report. Oral Presentation. Rube Goldberg device. Mouse trap car. Marble sorter. Balsa wood crane. Ping pong ball launcher
Digital Electronics • Basic electronics • Analog to digital conversion • Boolean algebra • Combinational logic circuits • Sequential logic circuits Robot design.
Digital Electronics • Basic electronics • Analog to digital conversion • Boolean algebra • Combinational logic circuits • Sequential logic circuits Robot design.
Digital Electronics • Basic electronics • Analog to digital conversion • Boolean algebra • Combinational logic circuits • Sequential logic circuits Robot design. Date of birth display.
Digital Electronics • Basic electronics • Analog to digital conversion • Boolean algebra • Combinational logic circuits • Sequential logic circuits Robot design. Date of birth display. Digital die simulator.
The Marble Sorter Project Design and build a device that will sort marbles of three different colors into separate bins.
Activities To computer Interface A simple computer program. To switches, motors and sensors
Read and comprehend a variety of text at different levels of difficulty Think critically and analytically across disciplines Write clearly and accurately. Listen actively and speak clearly and coherently Demonstrate personal management and teamwork skills Apply mathematics in a variety of settings.
PLTW at Glencoe • Learning Hard Stuff • Solving Problems • Having Fun