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Unit 2: Applications of Translation and Rotational Motion Learning Competency At the end of this lesson, the learners should be able to demonstrate through simple activities the relationship between linear and angular quantities: ● human movement (e.g. exercises, dance, and gymnastics), and ● ergonomic designs (e.g. buildings, vehicles, furniture, and toys) Learning Targets In this lesson, you should be able to do the following: ● Identify examples of ergonomic designs in everyday objects such as buildings, vehicles, furniture, and toys. ● Explain how principles of linear and angular motion are applied in ergonomic designs to improve safety, comfort, and efficiency. ● Demonstrate through simple models or simulations how motion concepts influence the design and function of ergonomic products. Learn About It Ergonomic design is a scientific approach ensuring tools, furniture, and spaces work with our bodies' natural movements, going beyond mere aesthetics. This involves applying fundamental motion principles like displacement, velocity, acceleration, and momentum in both linear and angular forms. These principles guide the design of everyday objects for safety, comfort, and efficiency. Motion Concepts and Ergonomics Effective ergonomic design ensures seamless interaction between products, environments, and the human body. This relies on a clear understanding of key concepts of linear and rotational motion, and how they apply to human movement. 2.5. Rotational Motion 2

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