(a)
The equivalent force between the two pulling forces and its direction.
(a)
Answer to Problem 67P
The equivalent force between the two pulling forces is
Explanation of Solution
Write the expression for person on the right pull with a force
Here,
Write the expression for person on the left pull with a force
Here,
Write the expression for the net force is acting between the two forces.
Here,
Write the expression for the magnitude of net force is acting between the two forces.
Here,
Write the expression for the angle of equivalent force.
Here,
Conclusion:
Substitute
Substitute
Substitute
Substitute
Substitute
Therefore, the equivalent force between the two pulling forces is
(b)
The force of the third person exerted on the mule to make the resultant force is equal to zero.
(b)
Answer to Problem 67P
The force of the third person is
Explanation of Solution
Write the expression for the third person exerted on the mule.
Here,
Conclusion:
Substitute
Therefore, the force of the third person is
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Chapter 1 Solutions
Principles of Physics: A Calculus-Based Text
- In a tug-of-war game on one campus, 15 students pull on a rope at both ends in an effort to displace the central knot to one side or the other. Two students pull with force 196 N each to the light, four students pull with force 98 N each to the left, five students pull with force 62 N each to the left, three students pull with force 150 N each to the right, and one student pulls with force 250 N to the left. Assuming the positive direction to the tight, express the net pull on the knot in terms of the unit vector. How big is the net pull on the knot? In what direction?arrow_forwardA force F1 of magnitude 4.80 units acts at the origin in a direction 50.0° above the positive x axis. A second force F2 of magnitude 5.00 units acts at the origin in the direction of the positive y axis. Find graphically the magnitude and direction of the resultant force F1 + F2. Find magnitude Find directionarrow_forwardTwo individuals are attempting to relocate a sofa by applying forces in the indicated directions. If F₁ = 490 N and F2 = 400 N, determine the vector expression for the resultant R of the two forces. Then determine the magnitude R of the resultant and the angle which it makes with the positive x-axis (measured counterclockwise from the x-axis). I F2 69⁰ -1 F₁ Answers: R= j) N R = e= i B i+ i Narrow_forward
- Two people are moving a heavy crate. One pushes on the crate with a force A which has a magnitude of 424.3 N and is directed due west. The other pushes with a force B, which has a magnitude of 303.8 N and is directed due north. What direction is the resultant force A+B applied to the crate?arrow_forwardTwo ropes are attached to a tree, and forces of F1 = 2.0Nˆi+4.0Nˆj and F2 = 3.0Nˆi+6.0Nˆj are applied. The forces are coplanar (in the same plane). (a) What is the resultant (net force) of these two force vectors? (b) Find the magnitude and direction of this net force.arrow_forwardF1, F2 and F3 forces act on a connection point. These forces and the resultant Define the force in Cartesian vector form. The strength of the resultant force and Find the directions it makes with the axes. X F₂=5 kN ye 30° сл 5 3 t UNTES F3 = 2 kN F₁=1.25 KN Zarrow_forward
- Two individuals are attempting to relocate a sofa by applying forces in the indicated directions. If F₁ = 680 N and F2 = 430 N, determine the vector expression for the resultant R of the two forces. Then determine the magnitude R of the resultant and the angle which it makes with the positive x-axis (measured counterclockwise from the x-axis). 50⁰ F₁ Answers: j) N R = (i R= D || B it i N Oarrow_forwardTwo forces act on an object. The first force has a magnitude of 17.0 N17.0 N and is oriented 68.0°68.0° counterclockwise from the +?+x‑axis, whereas the second force has ?x‑ and ?y‑components (−21.0 N,12.5 N).(−21.0 N,12.5 N). Express the magnitude and direction of the net force. magnitude: NN direction: °° counterclockwise from the +?+x‑axisarrow_forwardBefore starting this problem, review Conceptual Example 7. The force vector A has a magnitude of 94.0 newtons (N) and points due east. The force vector R has a magnitude of 137 N and points 79.6 ° north of east. Find the (a) magnitude and (b) direction of FA-E B. (Give the direction as a positive angle with respect to due east). Find the (c) magnitude and (d) direction of F8-FA (Give the direction as a positive angle with respect to due west). FR4 W i Units (a) Number Units i (b) Number Units i (c) Number Units (d) Number MacBook Pro G Search or type URLarrow_forward
- In a two-dimensional tug-of-war, Alex, Betty, and Charles pull horizontally on an automobile tire at the angles shown in the overhead view of the figure. The tire remains stationary in spite of the three pulls. Alex pulls with force of magnitude 202 N, and Charles pulls with force of magnitude 148 N. Note that the direction of Charles' force is not given. What is the magnitude of Betty's force?arrow_forwardTwo ropes are attached to a tree, and forces of F₁ = 2.01 +4.03 N and F₂=3.01 +6.01 Nare applied. The forces are coplanar (In the same plane). (a) What is the resultant (net force) of these two force vectors?arrow_forwardA student's car stalls right in front of a speed bump while she is on her way to physics class. To pull it over the bump, she ties a cable to her bumper and to a nearby tree, and pulls with a force, F, of 81.0 lbs (360 N) at the midpoint in a perpendicular direction.If θ is 11.0°, what is the size of the force pulling the car in lbsarrow_forward
- Principles of Physics: A Calculus-Based TextPhysicsISBN:9781133104261Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningUniversity Physics Volume 1PhysicsISBN:9781938168277Author:William Moebs, Samuel J. Ling, Jeff SannyPublisher:OpenStax - Rice University