At the presentation ceremony, a championship bowler is presented a 1.58-kg trophy which he holds at arm's length, a distance of 0.655 m from his shoulder joint. (a) Determine the torque (in N• m) the trophy exerts about the shoulder joint when his arm is horizontal. (Enter the magnitude only.) Carefully draw a diagram which shows the force F which produces the torque for this situation, the vector which locates the point of application of the force relative to the shoulder joint and the angle 0 between the direction of these two vectors. See if you can write a relationship that will allow you to determine the magnitude of the torque i if you know the magnitude of the vectors i and F, and also the angle 0 between their direction. N • m (b) Determine the torque (in N. m) the trophy exerts about the shoulder joint when his arm is at an angle of 35.0° below the horizontal. (Enter the magnitude only.) Carefully draw a diagram which shows the force F which produces the torque for this situation, the vector ; which locates the point of application of the force relative to the shoulder joint and the angle 0 between the direction of these two vectors. See if you can write a relationship that will allow you to determine the magnitude of the torque i if you know the magnitude of the vectors and F, and also the angle 0 between their direction. N •m

University Physics Volume 1
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Chapter10: Fixed-axis Rotation
Section: Chapter Questions
Problem 119AP: An automobile engine can produce 200Nm of torque. Calculate the angular acceleration produced if...
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At the presentation ceremony, a championship bowler is presented a 1.58-kg
trophy which he holds at arm's length, a distance of 0.655 m from his
shoulder joint.
(a) Determine the torque (in N · m) the trophy exerts about the shoulder
joint when his arm is horizontal. (Enter the magnitude only.)
Carefully draw a diagram which shows the force F which produces the
torque for this situation, the vector i which locates the point of
application of the force relative to the shoulder joint and the angle 0
between the direction of these two vectors. See if you can write a
relationship that will allow you to determine the magnitude of the torque
i if you know the magnitude of the vectors i and F, and also the angle 0
between their direction. N · m
(b) Determine the torque (in N · m) the trophy exerts about the shoulder
joint when his arm is at an angle of 35.0° below the horizontal. (Enter
the magnitude only.)
Carefully draw a diagram which shows the force F which produces the
torque for this situation, the vector ; which locates the point of
application of the force relative to the shoulder joint and the angle 0
between the direction of these two vectors. See if you can write a
relationship that will allow you to determine the magnitude of the torque
i if you know the magnitude of the vectors i and F, and also the angle 0
between their direction. N · m
Transcribed Image Text:At the presentation ceremony, a championship bowler is presented a 1.58-kg trophy which he holds at arm's length, a distance of 0.655 m from his shoulder joint. (a) Determine the torque (in N · m) the trophy exerts about the shoulder joint when his arm is horizontal. (Enter the magnitude only.) Carefully draw a diagram which shows the force F which produces the torque for this situation, the vector i which locates the point of application of the force relative to the shoulder joint and the angle 0 between the direction of these two vectors. See if you can write a relationship that will allow you to determine the magnitude of the torque i if you know the magnitude of the vectors i and F, and also the angle 0 between their direction. N · m (b) Determine the torque (in N · m) the trophy exerts about the shoulder joint when his arm is at an angle of 35.0° below the horizontal. (Enter the magnitude only.) Carefully draw a diagram which shows the force F which produces the torque for this situation, the vector ; which locates the point of application of the force relative to the shoulder joint and the angle 0 between the direction of these two vectors. See if you can write a relationship that will allow you to determine the magnitude of the torque i if you know the magnitude of the vectors i and F, and also the angle 0 between their direction. N · m
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