t's do this 0) 4x 15

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Let's do this example, following the same steps that the example but with new numbers.
r (0) = 4x0
8 = π rad
Odot = 0.5 rad/s
Odotdot 0.25 rad/s²
Mass of the motorcycle is 150 kg.
a.
Now using the formula: ag = rö + 2rẻ
what is the radial acceleration of the motorcycle?
O 4.094 m/s²
O 3.047 m/s²
O 5.189 m/s²
O 7.236 m/s²
b.
Let's find using the formula: tan =
Note: is the derivation of the function r about 0.
OOOO
O 86.6 deg
O 76.6 deg
O 56.6 deg
O 79.2 deg
d.
e.
f.
g.
C.
What is the magnitude of the friction force?
Give your answer as an integer
What is the magnitude of the normal force?
Give your answer as an integer.
If the path is defined by r (0) = 30².
Using:tan
find the angle at = rad.
Give your answer with one decimal in degree.
* (0) = 1/0²
0 (t) = 5t
What is the magnitude r dot at t= 0.2 second?
r (0) = 10²
0 (t) = 5t
What is the magnitude r dot dot at t= 0.2 second?
Transcribed Image Text:Let's do this example, following the same steps that the example but with new numbers. r (0) = 4x0 8 = π rad Odot = 0.5 rad/s Odotdot 0.25 rad/s² Mass of the motorcycle is 150 kg. a. Now using the formula: ag = rö + 2rẻ what is the radial acceleration of the motorcycle? O 4.094 m/s² O 3.047 m/s² O 5.189 m/s² O 7.236 m/s² b. Let's find using the formula: tan = Note: is the derivation of the function r about 0. OOOO O 86.6 deg O 76.6 deg O 56.6 deg O 79.2 deg d. e. f. g. C. What is the magnitude of the friction force? Give your answer as an integer What is the magnitude of the normal force? Give your answer as an integer. If the path is defined by r (0) = 30². Using:tan find the angle at = rad. Give your answer with one decimal in degree. * (0) = 1/0² 0 (t) = 5t What is the magnitude r dot at t= 0.2 second? r (0) = 10² 0 (t) = 5t What is the magnitude r dot dot at t= 0.2 second?
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