As shown below, on Triton a 9 kg beam of length L is leaning against a frictionless wall and is in static equilibrium. The center of mass of the beam is located 0.3L from the lower end of the beam. Determine the force the wall exerts on the beam and the minimum coefficient of static friction between the floor and the beam. 39° force wall exerts on beam = 0.3 L Hs, min

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Chapter34: Frontiers Of Physics
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Free fall
Planetary acceleration
on surface
(m/s²)
body
Callisto
(moon of
Jupiter)
1.24
Ceres
(largest
asteroid in
0.28
asteroid belt)
Europa
(moon of
Jupiter)
1.31
Ganymede
(largest moon
of Jupiter)
Io
(moon of
Jupiter)
1.43
1.8
Mars
3.72
Mercury
3.7
Moon
1.6
Pluto
0.62
Titan
(largest moon
of Saturn)
1.35
Triton
(largest moon
of Neptune)
0.78
Venus
8.87
Transcribed Image Text:Free fall Planetary acceleration on surface (m/s²) body Callisto (moon of Jupiter) 1.24 Ceres (largest asteroid in 0.28 asteroid belt) Europa (moon of Jupiter) 1.31 Ganymede (largest moon of Jupiter) Io (moon of Jupiter) 1.43 1.8 Mars 3.72 Mercury 3.7 Moon 1.6 Pluto 0.62 Titan (largest moon of Saturn) 1.35 Triton (largest moon of Neptune) 0.78 Venus 8.87
As shown below, on Triton a 9 kg beam of length L is leaning against a frictionless wall and is in static equilibrium. The center of mass of the beam is located 0.3L from the lower end of the beam.
Determine the force the wall exerts on the beam and the minimum coefficient of static friction between the floor and the beam.
39°
force wall exerts on beam =
0.3L
Hs, min =
Transcribed Image Text:As shown below, on Triton a 9 kg beam of length L is leaning against a frictionless wall and is in static equilibrium. The center of mass of the beam is located 0.3L from the lower end of the beam. Determine the force the wall exerts on the beam and the minimum coefficient of static friction between the floor and the beam. 39° force wall exerts on beam = 0.3L Hs, min =
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