In the figure, a constant force Fa of magnitude 83.0 N is applied to a 3.0 kg shoe box at angle o = 53.0°, causing the box to move up a frictionless ramp at constar speed. How much work is done on the box by F, when the box has moved through vertical distance h = 0.35 m?
In the figure, a constant force Fa of magnitude 83.0 N is applied to a 3.0 kg shoe box at angle o = 53.0°, causing the box to move up a frictionless ramp at constar speed. How much work is done on the box by F, when the box has moved through vertical distance h = 0.35 m?
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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![**Chapter 07, Problem 023**
In the figure, a constant force \(\vec{F}_a\) of magnitude 83.0 N is applied to a 3.0 kg shoe box at angle \(\phi = 53.0^\circ\), causing the box to move up a frictionless ramp at constant speed. How much work is done on the box by \(\vec{F}_a\) when the box has moved through vertical distance \(h = 0.35 \, \text{m}\)?
**Diagram Description:**
The diagram shows a box on an inclined plane. A force vector \(\vec{F}_a\) is shown pushing the box upwards along the incline. The angle \(\phi\) between the force vector and the incline is \(53.0^\circ\). The vertical displacement of the box is indicated as \(h = 0.35 \, \text{m}\).
**Input Fields:**
- Number: [Blank for input]
- Units: [Dropdown for selection]
*the tolerance is +/-5%*](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fcbd14ffb-bc40-4ae3-8f40-cba31e255ccc%2F15debe85-9045-4eca-847f-f6c577ea72b5%2Fwmgsrvk_processed.png&w=3840&q=75)
Transcribed Image Text:**Chapter 07, Problem 023**
In the figure, a constant force \(\vec{F}_a\) of magnitude 83.0 N is applied to a 3.0 kg shoe box at angle \(\phi = 53.0^\circ\), causing the box to move up a frictionless ramp at constant speed. How much work is done on the box by \(\vec{F}_a\) when the box has moved through vertical distance \(h = 0.35 \, \text{m}\)?
**Diagram Description:**
The diagram shows a box on an inclined plane. A force vector \(\vec{F}_a\) is shown pushing the box upwards along the incline. The angle \(\phi\) between the force vector and the incline is \(53.0^\circ\). The vertical displacement of the box is indicated as \(h = 0.35 \, \text{m}\).
**Input Fields:**
- Number: [Blank for input]
- Units: [Dropdown for selection]
*the tolerance is +/-5%*
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