The angular position of a polnt on the rim of a rotating wheel is given as a function of time: e(t) = 3t2 +5. where 8 is In radians. Find the radial (a) and the tangentlal accelerations (atan) at t=2 seconds if the radlus of the wheel is T= 0.5m.

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Chapter6: Uniform Circular Motion And Gravitation
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Problem 16PE: Olympic ice skaters are able to spin at about 5 rev/s. (a) What is their angular velocity in radians...
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72; atan 6
The angular position of a polnt on the rim of a rotating wheel is given as a function of time:
0(t) = 3t2 + 5. where 0 is in radians. Find the radial (aed) and the tangentlal accelerations (atan) at t=2 seconds if the radius of the wheel is
T=0.5m.
Select one:
O a. arad=
O b. arad =
12; atan= 6
C. Arad
12: atan
24
%3D
d. arad
6; atan = 6
=
O e. arad = 72; atan= 3
%3D
O f. arad
36: atan
= 12
%3D
O 8. arad
6; atan
12
%3D
h. arad =
72; atan = 36
Transcribed Image Text:72; atan 6 The angular position of a polnt on the rim of a rotating wheel is given as a function of time: 0(t) = 3t2 + 5. where 0 is in radians. Find the radial (aed) and the tangentlal accelerations (atan) at t=2 seconds if the radius of the wheel is T=0.5m. Select one: O a. arad= O b. arad = 12; atan= 6 C. Arad 12: atan 24 %3D d. arad 6; atan = 6 = O e. arad = 72; atan= 3 %3D O f. arad 36: atan = 12 %3D O 8. arad 6; atan 12 %3D h. arad = 72; atan = 36
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