2. For each case, determine the total kinetic energy of the system.

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2. For each case, determine the total kinetic energy of the system.
a.
Uniform Bowling Ball
m= 7 kg
R=0.11 m
G
rolling without slipping
VCG = 3 m/s
Transcribed Image Text:2. For each case, determine the total kinetic energy of the system. a. Uniform Bowling Ball m= 7 kg R=0.11 m G rolling without slipping VCG = 3 m/s
b.
@= 10 rad/s
MA= 2 kg
g
C.
v = 8 m/s
↓
d.
A
v=8 m/s
B
Pulley
m₂= 4 kg
R₂= 0.4 m
-R₁= 0.2 m
k= 0.3 m
Total Mass (including wheels) = 100 kg
4 wheels
uniform disks
mw = 1 kg (each)
Rw = 0.05 m
roll without slipping
mg = 3 kg
Total Mass (including wheels) = 100 kg
4 wheels
uniform disks
m 20 kg (each)
R-0.20 m
roll without slipping
MacBook Pro
Transcribed Image Text:b. @= 10 rad/s MA= 2 kg g C. v = 8 m/s ↓ d. A v=8 m/s B Pulley m₂= 4 kg R₂= 0.4 m -R₁= 0.2 m k= 0.3 m Total Mass (including wheels) = 100 kg 4 wheels uniform disks mw = 1 kg (each) Rw = 0.05 m roll without slipping mg = 3 kg Total Mass (including wheels) = 100 kg 4 wheels uniform disks m 20 kg (each) R-0.20 m roll without slipping MacBook Pro
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