Participate in the 'Trigonometry in Design' workshop to explore various light fixtures and analyze how right triangle trigonometry is used in their design.
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Engage in a hands-on activity where you experiment with basic materials to create small-scale models demonstrating different angles and dimensions.
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Refine your initial light fixture sketch based on feedback received during the Week 1 gallery walk, focusing on trigonometric accuracy and design improvements.
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Research trigonometric ratios (sine, cosine, tangent) and the Pythagorean theorem to understand their applications in real-world design problems.
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Conduct targeted research on materials suitable for constructing your light fixture, considering factors like weight, translucency, and structural integrity.
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Begin sketching initial design ideas for your light fixture, incorporating right triangle trigonometry to determine dimensions and angles.
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Collaborate with a classmate to conduct trigonometric calculations needed to adjust your design for the materials you've chosen, ensuring the fixture maintains its intended angles and dimensions.
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Begin constructing the physical prototype of your light fixture using the materials and blueprint created in Week 2. Pay close attention to the trigonometric calculations to ensure accuracy in angles and dimensions.
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Facilitate a gallery walk where you present your sketches and models to peers, gathering feedback on both design and trigonometric accuracy.
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Develop a detailed blueprint of your revised light fixture design, incorporating precise trigonometric calculations and material considerations.
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Document the construction process through a series of photos or videos, highlighting key steps where trigonometry is applied.
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Test your light fixture by installing a light source and observing its functionality. Make note of any issues with balance, light distribution, or structural integrity.
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Participate in a peer review session where you present your refined blueprint to classmates, receiving and providing constructive feedback on both design and mathematical accuracy.
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Finalize the construction of your light fixture, making any necessary adjustments to ensure both functional and aesthetic qualities are optimized.
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Engage in a troubleshooting session to address any design or construction challenges. Collaborate with classmates to brainstorm solutions, using trigonometry to adjust angles or dimensions as needed.
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Conduct a final quality assurance test on your light fixture to ensure it meets the design criteria and trigonometric accuracy. Focus on aspects such as stability, light distribution, and overall appearance.
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Prepare a presentation for the 'Light Up the Community' showcase. Include your design process, trigonometric principles applied, construction journey, and any adjustments made.
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Prepare a presentation that outlines the construction process, challenges faced, and how trigonometry was used to solve these challenges.
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Participate in the 'Light Up the Community' showcase, where you present your completed light fixture to community partners and peers. Share insights about how trigonometry influenced your design.
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Engage in a feedback session with community partners and classmates, gathering insights on the functionality and aesthetics of your light fixture. Consider any suggestions for future improvements.