Question 1: In this version of the "Giant Swint", the seat is connected to two cables, one of which is horizontal. The seat swings in a horizontal circle with a period of 2.07 seconds. If the seat and the person weight a total of 1180 N find the tension in the horiaontal cable and the tension in the cable that makes an angle of 40 degrees with the vertical. (Answers: T 7330 N and T-154ON) period 207 seconds. 1180 N weght: Th= ?
Question 1: In this version of the "Giant Swint", the seat is connected to two cables, one of which is horizontal. The seat swings in a horizontal circle with a period of 2.07 seconds. If the seat and the person weight a total of 1180 N find the tension in the horiaontal cable and the tension in the cable that makes an angle of 40 degrees with the vertical. (Answers: T 7330 N and T-154ON) period 207 seconds. 1180 N weght: Th= ?
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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Can you help me solving those two on the picture please.
![Question 1: In this version of the "Giant Swint", the seat is connected to two
cables, one of which is horizontal, The seat swings in a horizontal circle with
a period of 2.07 seconds. If the seat and the person weight a total of 1180
N, find the tension in the horizontal cable and the tension in the cable that
makes an angle of 40 degrees with the vertical. [Answers: Thoiz = 7330 N and
T40 = 1540N]
40.0°
period = 2.07 seconds.
%3D
Weight= 1180 N
Th= マく
-7.50 m-
1) A system composed of blocks, a light frictionless pulley, and
connecting ropes is shown in the figure. The coefficient of
friction between the both blocks and the incline is 0.12. The
.0-kg block accelerates downward when the system is
released from rest. What is the acceleration of the system
and the tension in the rope connecting the 6.0-kg block and
the 4.0-kg block? [Answers: 1.53 m/s?, 44.7 N]
44.0 kg
6.0 kg
9.0 kg
30°](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0655393b-8df3-4633-b13c-e0d6983d2306%2Fc95de175-22c8-4de1-a5b8-0fd1bb01b3d5%2Fhbwsr99_processed.png&w=3840&q=75)
Transcribed Image Text:Question 1: In this version of the "Giant Swint", the seat is connected to two
cables, one of which is horizontal, The seat swings in a horizontal circle with
a period of 2.07 seconds. If the seat and the person weight a total of 1180
N, find the tension in the horizontal cable and the tension in the cable that
makes an angle of 40 degrees with the vertical. [Answers: Thoiz = 7330 N and
T40 = 1540N]
40.0°
period = 2.07 seconds.
%3D
Weight= 1180 N
Th= マく
-7.50 m-
1) A system composed of blocks, a light frictionless pulley, and
connecting ropes is shown in the figure. The coefficient of
friction between the both blocks and the incline is 0.12. The
.0-kg block accelerates downward when the system is
released from rest. What is the acceleration of the system
and the tension in the rope connecting the 6.0-kg block and
the 4.0-kg block? [Answers: 1.53 m/s?, 44.7 N]
44.0 kg
6.0 kg
9.0 kg
30°
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