A fan blade rotates with angular velocity given by w:(t) = y- Bt2 Part A Calculate the angular acceleration as a function of time. Express your answer in terms of the variables B, 7, and t. ? a:(t) = Part B If y = 5.00 rad/s and B= 0.830 rad/s, calculate the instantaneous angular acceleration a; at t = 3.40 s. Express your answer in radians per second squared. Nνα ΑΣφ rad/s? Part C

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Chapter1: Units, Trigonometry. And Vectors
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A fan blade rotates with angular velocity given by
wz(t) = y- Bt².
Part A
Calculate the angular acceleration as a function of time.
Express your answer in terms of the variables B, y, and t.
a:(t) =
Part B
If y = 5.00 rad/s and B= 0.830 rad/s, calculate the instantaneous angular acceleration az at t= 3.40 s.
Express your answer in radians per second squared.
VO AEO
?
rad/s?
Part C
Transcribed Image Text:A fan blade rotates with angular velocity given by wz(t) = y- Bt². Part A Calculate the angular acceleration as a function of time. Express your answer in terms of the variables B, y, and t. a:(t) = Part B If y = 5.00 rad/s and B= 0.830 rad/s, calculate the instantaneous angular acceleration az at t= 3.40 s. Express your answer in radians per second squared. VO AEO ? rad/s? Part C
Part C
If y = 5.00 rad/s and B = 0.830 rad/s, calculate the average angular acceleration aav z for the time interval t = 0 to t = 3.40 s.
Express your answer in radians per second squared.
Hν ΑΣφ
Cav -z
rad/s
Transcribed Image Text:Part C If y = 5.00 rad/s and B = 0.830 rad/s, calculate the average angular acceleration aav z for the time interval t = 0 to t = 3.40 s. Express your answer in radians per second squared. Hν ΑΣφ Cav -z rad/s
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