An air-track glider is attached to a spring. The glider is pulled to the right and released from rest at t=0 s. It then oscillates with a period of 1.60 s and a maximum speed of 36.0 cm/s Part A What is the amplitude of the oscillation? Express your answer with the appropriate units. 9.17 cm ✓ Correct Correct answer is shown. Your answer 9 cm was either rounded differently or used a Part B Previous Answers What is the glider's position at t= 0.200 s? Express your answer with the appropriate units. Submit μA Value Units Provide Feedback ? Previous Answers Request Answer X Incorrect; Try Again; 2 attempts remaining

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**Physics of Oscillations: Air-Track Glider Experiment**

*Scenario:*
An air-track glider is connected to a spring. It is pulled to the right and released from rest at time \( t = 0 \, \text{s} \). The glider oscillates with a period of \( 1.60 \, \text{s} \) and reaches a maximum speed of \( 36.0 \, \text{cm/s} \).

**Part A:**
*Objective: Determine the Amplitude of Oscillation*

- **Question:** What is the amplitude of the oscillation?
- **Answer Submitted:** \( 9.17 \, \text{cm} \)
- **Feedback:** Correct. Your answer, \( 9 \, \text{cm} \), was either rounded differently or used appropriately.

**Part B:**
*Objective: Calculate the Glider's Position at a Specific Time*

- **Question:** What is the glider's position at \( t = 0.200 \, \text{s} \)?
- **Input Box:** [Value][Units]
- **Feedback:** Incorrect; Try Again. 2 attempts remaining.

*Note: Continue utilizing the appropriate physics equations to refine your answer for Part B and ensure units are correctly applied.*
Transcribed Image Text:**Physics of Oscillations: Air-Track Glider Experiment** *Scenario:* An air-track glider is connected to a spring. It is pulled to the right and released from rest at time \( t = 0 \, \text{s} \). The glider oscillates with a period of \( 1.60 \, \text{s} \) and reaches a maximum speed of \( 36.0 \, \text{cm/s} \). **Part A:** *Objective: Determine the Amplitude of Oscillation* - **Question:** What is the amplitude of the oscillation? - **Answer Submitted:** \( 9.17 \, \text{cm} \) - **Feedback:** Correct. Your answer, \( 9 \, \text{cm} \), was either rounded differently or used appropriately. **Part B:** *Objective: Calculate the Glider's Position at a Specific Time* - **Question:** What is the glider's position at \( t = 0.200 \, \text{s} \)? - **Input Box:** [Value][Units] - **Feedback:** Incorrect; Try Again. 2 attempts remaining. *Note: Continue utilizing the appropriate physics equations to refine your answer for Part B and ensure units are correctly applied.*
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