Energy changes in a system, and the ways energy is stored before and after such changes

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Question 13
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An industrial robotic gripper uses a calibrated spring-loaded mechanism to hold fragile components safely. When the gripper is fully engaged, the internal spring is compressed.

The compression of the spring is 0.15 m0.15\text{ m}0.15 m. The spring constant is 1600 N/m1600\text{ N/m}1600 N/m.

Calculate the elastic potential energy stored in the spring when the gripper is fully engaged.

Use the equation: elastic potential energy=0.5×spring constant×(extension)2\text{elastic potential energy} = 0.5 \times \text{spring constant} \times (\text{extension})^2elastic potential energy=0.5×spring constant×(extension)2

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Energy changes in a system, and the ways energy is stored before and after such changes Questions

  1. GCSE
  2. /Physics
  3. /Energy changes in a system, and the ways energy is stored before and after such changes