A bug labeled B, is trying its best to hold onto the edge of a spinning disk with radius R. Use for the spin angle, and it is defined positive in the clock-wise direction (-ê3). The spin rate is not constant (00). Inertial frame e is defined. Frame a is fixed on the spinning disk. R âz B â₁ ê₂ → ê₁

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A bug labeled B, is trying its best to hold onto the edge of a spinning disk with radius
R. Use for the spin angle, and it is defined positive in the clock-wise direction (-3).
The spin rate is not constant ( 0). Inertial frame e is defined. Frame a is fixed on the
spinning disk.
B
“ÁL.
R
Determine B's inertial velocity and acceleration, i.e. B and ea, expressed in e frame.
What about " and "aB (velocity and acceleration measured in a frame)? You should
clearly label and define all quantities that you used, for example, disk center, or origin of
e frame.
What is the basic kinematic equation for
this? Please show your logic for how you
get the equation
Transcribed Image Text:A bug labeled B, is trying its best to hold onto the edge of a spinning disk with radius R. Use for the spin angle, and it is defined positive in the clock-wise direction (-3). The spin rate is not constant ( 0). Inertial frame e is defined. Frame a is fixed on the spinning disk. B “ÁL. R Determine B's inertial velocity and acceleration, i.e. B and ea, expressed in e frame. What about " and "aB (velocity and acceleration measured in a frame)? You should clearly label and define all quantities that you used, for example, disk center, or origin of e frame. What is the basic kinematic equation for this? Please show your logic for how you get the equation
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