subject
Physics, 11.03.2020 02:39 lilchannelll4125

Consider the following two-car accident: Two cars of equal mass m collide at an intersection. Driver E was traveling eastward, and driver N, northward. After the collision, the two cars remain joined together and slide, with locked wheels, before coming to rest. Police on the scene measure the length d of the skid marks to be 9 meters. The coefficient of friction μ between the locked wheels and the road is equal to 0.9. (Figure 1) Each driver claims that his speed was less than 14 meters per second (about 31 mph). A third driver, who was traveling closely behind driver E prior to the collision, supports driver E's claim by asserting that driver E's speed could not have been greater than 12 meters per second. Take the following steps to decide whether driver N's statement is consistent with the third driver's contention.

Part A

Let the speeds of drivers E and N prior to the collision be denoted by ve and vn, respectively. Find v2, the square of the speed of the two-car system the instant after the collision.

Express your answer terms of ve and vn.

part B)

What is the kinetic energy K of the two-car system immediately after the collision?

Express your answer in terms of ve, vn, and m.

Part C)

Write an expression for the work Wfric done on the cars by friction.

Express your answer symbolically in terms of the mass m of a single car, the magnitude of the acceleration due to gravity g, the coefficient of sliding friction μ, and the distance dthrough which the two-car system slides before coming to rest.

part D

Using the information given in the problem introduction and assuming that the third driver is telling the truth, determine whether driver N has reported his speed correctly. Specifically, if driver E had been traveling with a speed of exactly 12 meters per second before the collision, what must driver N's speed have been before the collision?

Express your answer numerically, in meters per second, to the nearest integer. Take g, the magnitude of the acceleration due to gravity, to be 9.81 meters per second per second.

ansver
Answers: 2

Another question on Physics

question
Physics, 22.06.2019 05:30
Imagine that someone pushes one marble toward a motionless marble. would there still be action-reaction forces involved in the collision? how might the marbles’ motions be changed? ?
Answers: 1
question
Physics, 22.06.2019 18:30
If a star is moving toward earth, it is
Answers: 2
question
Physics, 23.06.2019 00:30
What is the moment of inertia i of this assembly about the axis through which it is pivoted? express the moment of inertia in terms of mr
Answers: 2
question
Physics, 23.06.2019 01:00
Carmen is load furniture and boxes onto a moving truck. she picks up boxes of her things, places them on a cart, and pushes the cart to the moving van. which term best describes the type of force carmen uses? a. contact b. friction c. gravity d. noncontact
Answers: 2
You know the right answer?
Consider the following two-car accident: Two cars of equal mass m collide at an intersection. Driver...
Questions
question
Mathematics, 30.09.2021 22:10
question
Chemistry, 30.09.2021 22:10
question
Mathematics, 30.09.2021 22:10
question
Mathematics, 30.09.2021 22:10
question
Mathematics, 30.09.2021 22:10
question
Mathematics, 30.09.2021 22:10
question
Mathematics, 30.09.2021 22:10
Questions on the website: 13722363