Block 1 (15 kg) is located on the surface of a table. A rope pulls on block 1 with a tension of 130.4 N at an angle of 66.97 degrees above the horizontal. The coefficient of kinetic friction between the block and the surface equals 0.2 (Use g 10 m/s?). On a sheet of paper, draw the free body diagram for block 1 using the two- subscript notation from class. After completing the free body diagram, enter below each force and its x & y-components. Remember that the x-component is the "i" component and the y-component is the "j" component. %3D FORCES on BLOCK 1 Weight force on block 1 by Earth WIE i + jN %3D Tension force on block 1 by Rope (rounded to nearest integer) T1R = i + jN Normal force on block 1 by Surface N1S = i + jN %3D Frictional force on block 1 by Surface f1S = i + jN Submit Answer Tries 0/2 What is the acceleration a of block 1? i+ j m/s2 a =
Block 1 (15 kg) is located on the surface of a table. A rope pulls on block 1 with a tension of 130.4 N at an angle of 66.97 degrees above the horizontal. The coefficient of kinetic friction between the block and the surface equals 0.2 (Use g 10 m/s?). On a sheet of paper, draw the free body diagram for block 1 using the two- subscript notation from class. After completing the free body diagram, enter below each force and its x & y-components. Remember that the x-component is the "i" component and the y-component is the "j" component. %3D FORCES on BLOCK 1 Weight force on block 1 by Earth WIE i + jN %3D Tension force on block 1 by Rope (rounded to nearest integer) T1R = i + jN Normal force on block 1 by Surface N1S = i + jN %3D Frictional force on block 1 by Surface f1S = i + jN Submit Answer Tries 0/2 What is the acceleration a of block 1? i+ j m/s2 a =
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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Question
![Block 1 (15 kg) is located on the surface of a table. A rope pulls on block 1 with a
tension of 130.4 N at an angle of 66.97 degrees above the horizontal. The
coefficient of kinetic friction between the block and the surface equals 0.2 (Use g
10 m/s?).
On a sheet of paper, draw the free body diagram for block 1 using the two-
subscript notation from class. After completing the free body diagram, enter below
each force and its x & y-components. Remember that the x-component is the "i"
component and the y-component is the "j" component.
%3D
FORCES on BLOCK 1
Weight force on block 1 by Earth
W1E =
i +
jN
Tension force on block 1 by Rope (rounded to nearest integer)
jN
T1R =
i +
%3D
Normal force on block 1 by Surface
N1S =
i +
jN
%3D
Frictional force on block 1 by Surface
f1S =
i +
jN
%3D
Submit Answer
Tries 0/2
What is the acceleration a of block 1?
i+ '
j m/s²
a =](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff3c0899a-5c62-4a86-a39c-5b160af6a916%2F26467c12-cf10-4c6c-9b91-f7d7033d2263%2Fc5z108i_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Block 1 (15 kg) is located on the surface of a table. A rope pulls on block 1 with a
tension of 130.4 N at an angle of 66.97 degrees above the horizontal. The
coefficient of kinetic friction between the block and the surface equals 0.2 (Use g
10 m/s?).
On a sheet of paper, draw the free body diagram for block 1 using the two-
subscript notation from class. After completing the free body diagram, enter below
each force and its x & y-components. Remember that the x-component is the "i"
component and the y-component is the "j" component.
%3D
FORCES on BLOCK 1
Weight force on block 1 by Earth
W1E =
i +
jN
Tension force on block 1 by Rope (rounded to nearest integer)
jN
T1R =
i +
%3D
Normal force on block 1 by Surface
N1S =
i +
jN
%3D
Frictional force on block 1 by Surface
f1S =
i +
jN
%3D
Submit Answer
Tries 0/2
What is the acceleration a of block 1?
i+ '
j m/s²
a =
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