Captain Jack Sparrow is pushing a treasure chest across the wooden deck of his trusty ship, The Black Pearl. The chest is much shorter than he is, so his applied force makes an angle of 55.0° below the horizontal. The coefficient of kinetic friction between the chest and the deck has a value of 0.366, and the chest has a mass of 219 kg. Draw a diagram showing all of the forces that are acting on the chest. If a force needs to be broken up into components, show the components and formulas for the components. Derive formulas (just formulas!) for the normal force felt by the chest, and the friction force felt by the chest. How much force must Jack exert on the chest to move it across the deck at a constant speed?
Captain Jack Sparrow is pushing a treasure chest across the wooden deck of his trusty ship, The Black Pearl. The chest is much shorter than he is, so his applied force makes an angle of 55.0° below the horizontal. The coefficient of kinetic friction between the chest and the deck has a value of 0.366, and the chest has a mass of 219 kg. Draw a diagram showing all of the forces that are acting on the chest. If a force needs to be broken up into components, show the components and formulas for the components. Derive formulas (just formulas!) for the normal force felt by the chest, and the friction force felt by the chest. How much force must Jack exert on the chest to move it across the deck at a constant speed?
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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Captain Jack Sparrow is pushing a treasure chest across the wooden deck of his trusty ship, The Black Pearl. The chest is much shorter than he is, so his applied force makes an angle of 55.0° below the horizontal. The coefficient of kinetic friction between the chest and the deck has a value of 0.366, and the chest has a mass of 219 kg.
- Draw a diagram showing all of the forces that are acting on the chest. If a force needs to be broken up into components, show the components and formulas for the components.
- Derive formulas (just formulas!) for the normal force felt by the chest, and the friction force felt by the chest.
- How much force must Jack exert on the chest to move it across the deck at a constant speed?
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