In your job as a mechanical engineer you are designing a flywheel and clutch-plate system like the one in and the m o inertia o s negligible. With the (Figure 1). Disk A is made of a lighter material than disk B. A about the shaft is one-third that of disk B. The moment of inertia of the s clutch disconnected, A is brought up to an angular speed wo B is intially at rest. The accelerating torque is then removed from A, and A is coupled to B. (Ignore bearing friction.) The design specifications allow for a maximum of 3800 J of thermal energy to be developed when the connection is made. What can be the maximum value of the original kinetic energy of disk A so as not to exceed the maximum allowed value of the thermal energy? Express your answer with the appropriate units. KA = Value Units Figure BEFORE APTER
In your job as a mechanical engineer you are designing a flywheel and clutch-plate system like the one in and the m o inertia o s negligible. With the (Figure 1). Disk A is made of a lighter material than disk B. A about the shaft is one-third that of disk B. The moment of inertia of the s clutch disconnected, A is brought up to an angular speed wo B is intially at rest. The accelerating torque is then removed from A, and A is coupled to B. (Ignore bearing friction.) The design specifications allow for a maximum of 3800 J of thermal energy to be developed when the connection is made. What can be the maximum value of the original kinetic energy of disk A so as not to exceed the maximum allowed value of the thermal energy? Express your answer with the appropriate units. KA = Value Units Figure BEFORE APTER
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