A 2.70-kg ball is shot into a 0.425-kg box that is at rest on a frictionless, horizontal table (see figure below); after the collision, the ball is embedded in the box. The box is attached to a 0.30-m rope that is attached to the table on the other end. The ball's initial velocity is perpendicular to the rope as shown. If the ball's initial speed before impact is 13.2 m/s, what is the tension in the rope after the collision? 0.30 m
A 2.70-kg ball is shot into a 0.425-kg box that is at rest on a frictionless, horizontal table (see figure below); after the collision, the ball is embedded in the box. The box is attached to a 0.30-m rope that is attached to the table on the other end. The ball's initial velocity is perpendicular to the rope as shown. If the ball's initial speed before impact is 13.2 m/s, what is the tension in the rope after the collision? 0.30 m
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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![**Problem Description:**
A 2.70-kg ball is shot into a 0.425-kg box that is at rest on a frictionless, horizontal table. After the collision, the ball is embedded in the box. The box is attached to a 0.30-m rope that is connected to the table on the other end. The ball's initial velocity is perpendicular to the rope as shown. If the ball's initial speed before impact is 13.2 m/s, what is the tension in the rope after the collision?
(Box and rope system details are provided with imagery.)
**Diagram Explanation:**
The diagram shows a horizontal table with a square box attached to a vertical peg via a rope. The rope’s length is 0.30 meters. An arrow indicates the initial velocity direction of the incoming ball, which is perpendicular to the rope at the point of impact.
**Calculation Field:**
The empty field is provided for calculating and entering the tension in the rope in newtons (N) after the collision.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0c0a33fd-0568-4a66-9e09-cb4c2724e152%2Fcd28efe7-235d-4860-89ef-4b30af48b459%2Ftwz7mp_processed.jpeg&w=3840&q=75)
Transcribed Image Text:**Problem Description:**
A 2.70-kg ball is shot into a 0.425-kg box that is at rest on a frictionless, horizontal table. After the collision, the ball is embedded in the box. The box is attached to a 0.30-m rope that is connected to the table on the other end. The ball's initial velocity is perpendicular to the rope as shown. If the ball's initial speed before impact is 13.2 m/s, what is the tension in the rope after the collision?
(Box and rope system details are provided with imagery.)
**Diagram Explanation:**
The diagram shows a horizontal table with a square box attached to a vertical peg via a rope. The rope’s length is 0.30 meters. An arrow indicates the initial velocity direction of the incoming ball, which is perpendicular to the rope at the point of impact.
**Calculation Field:**
The empty field is provided for calculating and entering the tension in the rope in newtons (N) after the collision.
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