Block 1 (10 kg) s puled by a repe from left to right up a ramp which is inclined 45 degrees from the horizonta. The rope puls on biock 1 with a force of 170 N paraliel to the surface of the inclined plane. The coefficient of kinetic frietion between the block and the surface equals 0.6. On a sheet of paper, draw the free body diagram for block i using the two-subscript notation from class. Assume that the x-axis is perallel to the incline and positive in the direction up the incline. Ater completing the free body dagram, enter below each force and its y components. FORCES on BLOCK 1 Weight force on block 1 by tarth Tension force on block 1 by Rope TIR- Normal force on block 1 by Surfece NIS- Frictional torce o on bleck I y Suface IN nt Aner Tres 0/2 What is the acceleration afock

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Block 1 (10 kg) is puled by a rope from left to right up a ramp which is inclined 45 degrees from the horizontal. The rope pulis on biock 1 with a force of 170 N paraliel to the surface of the inclined plane.
The coefficient of kinetic frietion between the block and the surface equals 0.6.
On a sheet of paper, draw the free body diagram for block i using the two-subscript notation from class. Assume that the x-axis is parallei to the incline and positive in the direction up the incline. After
completing the free body diagram, enter below each force and its x&y components.
FORCES on BLOCK 1
Weight force on block 1 by Earth
WIE -
Tension force on biock 1 by Rope
TIR -
Normal force on block 1 by Sarfece
NIS -
N
Frictional force on block 1 by Surface
IN
Bubmt Anewer Tries 0/2
What is the acceleration a of block 17
Submit Anewer Tries 0/2
Transcribed Image Text:Block 1 (10 kg) is puled by a rope from left to right up a ramp which is inclined 45 degrees from the horizontal. The rope pulis on biock 1 with a force of 170 N paraliel to the surface of the inclined plane. The coefficient of kinetic frietion between the block and the surface equals 0.6. On a sheet of paper, draw the free body diagram for block i using the two-subscript notation from class. Assume that the x-axis is parallei to the incline and positive in the direction up the incline. After completing the free body diagram, enter below each force and its x&y components. FORCES on BLOCK 1 Weight force on block 1 by Earth WIE - Tension force on biock 1 by Rope TIR - Normal force on block 1 by Sarfece NIS - N Frictional force on block 1 by Surface IN Bubmt Anewer Tries 0/2 What is the acceleration a of block 17 Submit Anewer Tries 0/2
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