A captive James Bond is strapped to a table beneath a huge pendulum made of a 2.0-m-diameter uniform circular metal blade rigidly attached, at its top edge, to a 7.5-m-long, massless rod. The pendulum is set swinging with a 10 amplitude when its lower edge is 4.0 m above the prisoner, then the table slowly starts ascending at 1.0 mm/s. After 25 minutes, the pendulum's amplitude has decreased to 7.0°. Fortunately, the prisoner is freed with a mere 30 s to spare. Part A What was the speed of the lower edge of the blade as it passed over him for the last time? Express your answer with the appropriate units. HA 4 20 ? Value Submit Request Answer Units
A captive James Bond is strapped to a table beneath a huge pendulum made of a 2.0-m-diameter uniform circular metal blade rigidly attached, at its top edge, to a 7.5-m-long, massless rod. The pendulum is set swinging with a 10 amplitude when its lower edge is 4.0 m above the prisoner, then the table slowly starts ascending at 1.0 mm/s. After 25 minutes, the pendulum's amplitude has decreased to 7.0°. Fortunately, the prisoner is freed with a mere 30 s to spare. Part A What was the speed of the lower edge of the blade as it passed over him for the last time? Express your answer with the appropriate units. HA 4 20 ? Value Submit Request Answer Units
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Transcribed Image Text:A captive James Bond is strapped to a table
beneath a huge pendulum made of a
2.0-m-diameter uniform circular metal blade rigidly
attached, at its top edge, to a 7.5-m-long, massless
rod. The pendulum is set swinging with a 10°
amplitude when its lower edge is 4.0 m above the
prisoner, then the table slowly starts ascending at
1.0 mm/s. After 25 minutes, the pendulum's
amplitude has decreased to 7.0°. Fortunately, the
prisoner is freed with a mere 30 s to spare.
Part A
What was the speed of the lower edge of the blade as it passed over him for the last time?
Express your answer with the appropriate units.
OM
μÀ
4
A
?
Value
Units
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