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A 1 000-kg car is pulling a 300-kg trailer. Together, the car and trailer move forward with an acceleration of 2.15 m/s2. Ignore any force of air drag on the car and all frictional forces on the trailer. Determine (a) the net force on the car, (b) the net force on the trailer, (c) the force exerted by the trailer on the car, and (d) the resultant force exerted by the car on the road.
(a)
![Check Mark](/static/check-mark.png)
The net force on the car.
Answer to Problem 42P
The net force on the car is
Explanation of Solution
The free body diagram for the system is given by figure 1.
Write the expression for the net force along horizontal direction.
Here,
The car is having only horizontal acceleration.
Conclusion:
Substitute,
The net force is acting along forward direction.
Thus, the net force on the car is
(b)
![Check Mark](/static/check-mark.png)
The net force on the trailer.
Answer to Problem 42P
The net force on the car is
Explanation of Solution
Write the expression for the net force along horizontal direction.
Here,
Conclusion:
Substitute,
The net force is acting along forward direction.
Thus, the net force on the car is
(c)
![Check Mark](/static/check-mark.png)
The force exerted by the trailer on the car.
Answer to Problem 42P
The force exerted by the trailer on the car is
Explanation of Solution
According to the Newton’s third each and every action has equalled and opposite reaction. In the given problem, the force acting on the trailer given by the car is 645N. This force is directed along forward.
Thus, according to Newton’s third law, the trailer will also give same amount of force on the car. Hence, The force exerted by the trailer on the car is
(d)
![Check Mark](/static/check-mark.png)
The resultant force exerted by the car on the road.
Answer to Problem 42P
The resultant force exerted by the car on the road is
Explanation of Solution
Write the expression for the net force exerted by the road acting on the car.
Here,
Write the expression for the x-component of force.
Write the expression for the y-component of force.
Here,
Write the expression for the magnitude of the net force exerted by the road on the car by using (IV) and (V).
Here,
Write the expression for the magnitude of the net force exerted by the road on the car by using (IV) and (V).
Here,
Conclusion:
Substitute,
Substitute,
Here, the force with magnitude
Thus, according to Newton’s third law, the resultant force exerted by the car on the road is
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Chapter 4 Solutions
Bundle: Principles of Physics: A Calculus-Based Text, 5th + WebAssign Printed Access Card for Serway/Jewett's Principles of Physics: A Calculus-Based Text, 5th Edition, Multi-Term
- Two moles of carbon monoxide (CO) start at a pressure of 1.4 atm and a volume of 35 liters. The gas is then compressed adiabatically to 1/3 this volume. Assume that the gas may be treated as ideal. Part A What is the change in the internal energy of the gas? Express your answer using two significant figures. ΕΠΙ ΑΣΦ AU = Submit Request Answer Part B Does the internal energy increase or decrease? internal energy increases internal energy decreases Submit Request Answer Part C ? J Does the temperature of the gas increase or decrease during this process? temperature of the gas increases temperature of the gas decreases Submit Request Answerarrow_forwardYour answer is partially correct. Two small objects, A and B, are fixed in place and separated by 2.98 cm in a vacuum. Object A has a charge of +0.776 μC, and object B has a charge of -0.776 μC. How many electrons must be removed from A and put onto B to make the electrostatic force that acts on each object an attractive force whose magnitude is 12.4 N? e (mea is the es a co le E o ussian Number Tevtheel ed Media ! Units No units → answe Tr2Earrow_forward4 Problem 4) A particle is being pushed up a smooth slot by a rod. At the instant when 0 = rad, the angular speed of the arm is ė = 1 rad/sec, and the angular acceleration is = 2 rad/sec². What is the net force acting on the 1 kg particle at this instant? Express your answer as a vector in cylindrical coordinates. Hint: You can express the radial coordinate as a function of the angle by observing a right triangle. (20 pts) Ꮎ 2 m Figure 3: Particle pushed by rod along vertical path.arrow_forward
- 4 Problem 4) A particle is being pushed up a smooth slot by a rod. At the instant when 0 = rad, the angular speed of the arm is ė = 1 rad/sec, and the angular acceleration is = 2 rad/sec². What is the net force acting on the 1 kg particle at this instant? Express your answer as a vector in cylindrical coordinates. Hint: You can express the radial coordinate as a function of the angle by observing a right triangle. (20 pts) Ꮎ 2 m Figure 3: Particle pushed by rod along vertical path.arrow_forwardplease solve and answer the question correctly. Thank you!!arrow_forwardNo chatgpt pls will upvotearrow_forward
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