Two wheels A and B with weights w and 7w, respectively, are connected by a uniform rod with weight. as shown below. The wheels are free to roll on the sloped surfaces. Determine the angle (in degrees) that the rod forms with the horizontal when the system is in equilibrium. Hint: There are five forces acting on the rod, which is two weights of the wheels, two normal reaction forces at points where the wheels make contacts with the wedge, and the weight of the rod. (Enter the smallest angle.) 15.175 B X° 30° 60° A

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W
Two wheels A and B with weights w and 7w, respectively, are connected by a uniform rod with weight as shown below.
6
The wheels are free to roll on the sloped surfaces. Determine the angle (in degrees) that the rod forms with the horizontal
when the system is in equilibrium. Hint: There are five forces acting on the rod, which is two weights of the wheels, two
normal reaction forces at points where the wheels make contacts with the wedge, and the weight of the rod. (Enter the
smallest angle.)
15.175
B
30°
60°
A
Transcribed Image Text:W Two wheels A and B with weights w and 7w, respectively, are connected by a uniform rod with weight as shown below. 6 The wheels are free to roll on the sloped surfaces. Determine the angle (in degrees) that the rod forms with the horizontal when the system is in equilibrium. Hint: There are five forces acting on the rod, which is two weights of the wheels, two normal reaction forces at points where the wheels make contacts with the wedge, and the weight of the rod. (Enter the smallest angle.) 15.175 B 30° 60° A
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