Yes , as per Newton's third law of motion in any interaction between two bodies, the force applied by the first body on the second is equal and opposite to the force applied by second on first body.

When a small car is towing a large car by a very light horizontal top, does...
A small car of mass m and a large car of mass
4m drive along a highway at constant speed. They approach
a curve of radius R. Both cars maintain the same
acceleration a as they travel around the curve. How does
the speed of the small car vS compare to the speed of the
large car vL as they round the curve?
Now assume that two identical cars of mass m drive
along a highway. One car approaches a...
A large truck collides head-on with a small compact car. During the collision: (A) the truck exerts a greater amount of force on the car than the car exerts on the truck. (B) the car exerts a greater amount of force on the truck than the truck exerts on the car. (C) neither exerts a force on the other, the car gets smashed simply because it gets in the way of the truck. (D) the truck exerts a force of...
The three ropes in figure P5.1 are tied to a small, very light ring. Two ropes are anchored to walls at right angles, and the third rope pulls as shown. What is the T1 and T2 the magnitudes of the tension forces in the first two ropes?
The three ropes in FIGURE are tied to a small, very light ring. Two of these ropes are anchored to walls at right angles with the tensions shown in the figure. What is the magnitude of the tension in the third rope? Use a=0.63 m, b=0.57 m, T1=39.7 N, T2=91.1 N.What is the direction of the tension in the third rope? (relative to horizontal)
1. The three ropes in the figure are tied to a small, very light
ring. Two of the ropes are anchored to walls at right angles, and
the third rope pulls as shown. What are T1and T2, the magnitudes of
the tension forces in the first two ropes?
A. T1=
B T2=
3. The two angled ropes used to support the crate in the figure
below can withstand a maximum tension of 1700N before they
break.
A. What is the...
A large box of mass M is pulled across a horizontal, frictionless surface by a horizontal rope with tension T. A small box of mass m sits on top of the large box. The coefficients of static and kinetic friction between the two boxes are μs and μk, respectively. PART A: Find an expression for the maximum tension Tmax for which the small box rides on top of the large box without slipping. Express your answer in terms of the...
In a stunt being filmed for a movie, a sports car overtakes a truck towing a ramp, drives up and off the ramp, soars into the air, and then lands on top of a flat trailer being towed by a second truck. The tops of the ramp and the flat trailer are the same height above the road, and the ramp is inclined 11° above the horizontal. Both trucks are driving at a constant speed of 18 m/s, and the...
In a stunt being filmed for a movie, a sports car overtakes a truck towing a ramp, drives up and off the ramp, soars into the air, and then lands on top of a flat trailer being towed by a second truck. The tops of the ramp and the flat trailer are the same height above the road, and the ramp is inclined 17° above the horizontal. Both trucks are driving at a constant speed of 13 m/s, and the...
Arnold Strongman and Suzie Small each pull very hard on opposite ends of a rope in a tug-of-war. the greater force on the rope is exerted by Arnold, of course. Suzie, surprisingly. both the same, interestingly. A pair of toy freight cars, one twice the mass of the other, fly apart when a compressed spring that joins them is released. The spring exerts the greater force on the lighter car. heavier car. same on each. What is the force of...