In the figure, a small 0.425 kg block slides down a frictionless surface through height h = 0.678 m and then sticks to a uniform vertical rod of mass M = 0.850 kg and length d = 2.73 m. The rod pivots about point O through angle before momentarily stopping. Find 0. A Number ! Units °(degrees)

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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I got 37.2 degreee but its wrong

In the figure, a small 0.425 kg block slides down a frictionless surface through height \( h = 0.678 \, \text{m} \) and then sticks to a uniform vertical rod of mass \( M = 0.850 \, \text{kg} \) and length \( d = 2.73 \, \text{m} \). The rod pivots about point \( O \) through angle \( \theta \) before momentarily stopping. Find \( \theta \).

### Diagram Explanation
The diagram shows the scenario described:
- A vertical rod pivots around a fixed point \( O \) at the top.
- The block starts at a height \( h \) above the ground and moves along a curved, frictionless path.
- The angle \( \theta \) is the angular displacement of the rod when it stops.

### Input Fields
- **Number:** Enter your answer.
- **Units:** The angle \( \theta \) should be entered in degrees.
Transcribed Image Text:In the figure, a small 0.425 kg block slides down a frictionless surface through height \( h = 0.678 \, \text{m} \) and then sticks to a uniform vertical rod of mass \( M = 0.850 \, \text{kg} \) and length \( d = 2.73 \, \text{m} \). The rod pivots about point \( O \) through angle \( \theta \) before momentarily stopping. Find \( \theta \). ### Diagram Explanation The diagram shows the scenario described: - A vertical rod pivots around a fixed point \( O \) at the top. - The block starts at a height \( h \) above the ground and moves along a curved, frictionless path. - The angle \( \theta \) is the angular displacement of the rod when it stops. ### Input Fields - **Number:** Enter your answer. - **Units:** The angle \( \theta \) should be entered in degrees.
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