1. Add the force vectors acting on the ship given the magnitudes: drive D = 75 kN, resistance R=40 kN, and tensions T, and T, are both 150 kN 30.0 30.0 2. A steel l-beam with a weight of 8,000 newtons (remember that weight is a force measured in newtons) is suspended at rest in the air by two identical cables. Examine the forces on the I- beam to find the magnitude of force in each cable. 70.0° 70.0° 1-beam 3. Three forces act on a beach ball. Vector F1 has a magnitude of 90 newtons and F2 has a magnitude of 50 newtons. Find the magnitude and angle of F3 so that the sum of the forces is zero. W E 60.0 F2

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1. Add the force vectors acting on the ship given the magnitudes: drive D = 75 kN, resistance
R=40 kN, and tensions T, and T, are both 150 kN
30.0
30.0
2. A steel l-beam with a weight of 8,000 newtons (remember that weight is a force measured in
newtons) is suspended at rest in the air by two identical cables. Examine the forces on the I-
beam to find the magnitude of force in each cable.
70.0° 70.0°
I-beam
3. Three forces act on a beach ball. Vector F1 has a magnitude of 90 newtons and F2 has a
magnitude of 50 newtons. Find the magnitude and angle of F3 so that the sum of the forces is
zero.
F1
W
60.0
S F2
Transcribed Image Text:1. Add the force vectors acting on the ship given the magnitudes: drive D = 75 kN, resistance R=40 kN, and tensions T, and T, are both 150 kN 30.0 30.0 2. A steel l-beam with a weight of 8,000 newtons (remember that weight is a force measured in newtons) is suspended at rest in the air by two identical cables. Examine the forces on the I- beam to find the magnitude of force in each cable. 70.0° 70.0° I-beam 3. Three forces act on a beach ball. Vector F1 has a magnitude of 90 newtons and F2 has a magnitude of 50 newtons. Find the magnitude and angle of F3 so that the sum of the forces is zero. F1 W 60.0 S F2
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