GO In Fig. 12-44, a 15 kg block is held in place via a pulley system. The person’s upper arm is vertical; the forearm is at angle θ = 30° with the horizontal. Forearm and hand together have a mass of 2.0 kg, with a center of mass at distance d 1 = 15 cm from the contact point of the forearm bone and the upper-arm bone (humerus).The triceps muscle pulls vertically upward on the forearm at distance d 2 = 2.5 cm behind that contact point. Distance d 3 is 35 cm. What are the (a) magnitude and (b) direction (up or down) of the force on the forearm from the triceps muscle and the (c) magnitude and (d) direction (up or down) of the force on the forearm from the humerus? Figure 12-44 Problem 27.
GO In Fig. 12-44, a 15 kg block is held in place via a pulley system. The person’s upper arm is vertical; the forearm is at angle θ = 30° with the horizontal. Forearm and hand together have a mass of 2.0 kg, with a center of mass at distance d 1 = 15 cm from the contact point of the forearm bone and the upper-arm bone (humerus).The triceps muscle pulls vertically upward on the forearm at distance d 2 = 2.5 cm behind that contact point. Distance d 3 is 35 cm. What are the (a) magnitude and (b) direction (up or down) of the force on the forearm from the triceps muscle and the (c) magnitude and (d) direction (up or down) of the force on the forearm from the humerus? Figure 12-44 Problem 27.
GO In Fig. 12-44, a 15 kg block is held in place via a pulley system. The person’s upper arm is vertical; the forearm is at angle θ =30° with the horizontal. Forearm and hand together have a mass of 2.0 kg, with a center of mass at distance d1 = 15 cm from the contact point of the forearm bone and the upper-arm bone (humerus).The triceps muscle pulls vertically upward on the forearm at distance d2 = 2.5 cm behind that contact point. Distance d3 is 35 cm. What are the (a) magnitude and (b) direction (up or down) of the force on the forearm from the triceps muscle and the (c) magnitude and (d) direction (up or down) of the force on the forearm from the humerus?
A cart on wheels (assume frictionless) with a mass of 20 kg is pulled rightward with a 50N force. What is its acceleration?
Two-point charges of 5.00 µC and -3.00 µC are placed 0.250 m apart.a) What is the electric force on each charge? Include strength and direction and a sketch.b) What would be the magnitude of the force if both charges are positive? How about the direction?
c) What will happen to the electric force on each piece of charge if they are moved twice as far apart? (Give a numerical answer as well as an explanation.)
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