The force acting on a particle varies as in the figure below. (The x axis is marked in increments of 0.500 m.) A coordinate plane has a horizontal axis labeled x (m) and a vertical axis labeled Fx (N). There are five points, connected by straight lines in order from A to E. Point A is at (0,0). Point B is at (2,6). Point C is at (4,0). Point D is at (5,−3). Point E is at (6,0). Find the work done by the force as the particle moves across the following distances. (a) from x = 0 m to x = 4.00 m J (b) from x = 4.00 m to x = 6.00 m J (c) from x = 0 m to x = 6.00 m J
The force acting on a particle varies as in the figure below. (The x axis is marked in increments of 0.500 m.) A coordinate plane has a horizontal axis labeled x (m) and a vertical axis labeled Fx (N). There are five points, connected by straight lines in order from A to E. Point A is at (0,0). Point B is at (2,6). Point C is at (4,0). Point D is at (5,−3). Point E is at (6,0). Find the work done by the force as the particle moves across the following distances. (a) from x = 0 m to x = 4.00 m J (b) from x = 4.00 m to x = 6.00 m J (c) from x = 0 m to x = 6.00 m J
College Physics
1st Edition
ISBN:9781938168000
Author:Paul Peter Urone, Roger Hinrichs
Publisher:Paul Peter Urone, Roger Hinrichs
Chapter3: Two-dimensional Kinematics
Section: Chapter Questions
Problem 11PE: Find the components of vtot along the x- and y-axes in Figure 3.57.
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The force acting on a particle varies as in the figure below. (The x axis is marked in increments of 0.500 m.)
A coordinate plane has a horizontal axis labeled x (m) and a vertical axis labeled Fx (N). There are five points, connected by straight lines in order from A to E.
- Point A is at (0,0).
- Point B is at (2,6).
- Point C is at (4,0).
- Point D is at (5,−3).
- Point E is at (6,0).
Find the work done by the force as the particle moves across the following distances.
(a) from x = 0 m to x = 4.00 m
J
(b) from x = 4.00 m to x = 6.00 m
J
(c) from x = 0 m to x = 6.00 m
J
J
(b) from x = 4.00 m to x = 6.00 m
J
(c) from x = 0 m to x = 6.00 m
J
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