The vacuum cleaner's armature shaft S shown in (Figure 1) rotates with an angular acceleration of a -4 rad/s², where is in rad/s Part A Determine the brush's angular velocity when ₤=35, starting from wo=2.0 rad/s, at t=0. The radi of the shaft and the brush are 0.30 In. and 1.2 In., respectively. Neglect the thickness of the drive belt. Express your answer in radiant per cecond to three significant figures. ▸ View Available Hint(c) for Part A for Part A Part A Part A Vindo for Parredo to Part A for Part A keyboard shortcuts for Part A help for Part A WB= Submit rad/s

University Physics Volume 1
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Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter11: Angular Momentum
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The vacuum cleaner's armature shaft S shown in (Figure 1) rotates with an angular acceleration of a -4 rad/s², where is in
rad/s
Part A
Determine the brush's angular velocity when ₤=35, starting from wo=2.0 rad/s, at t=0. The radi of the shaft and the brush are 0.30 In. and 1.2 In., respectively. Neglect the thickness of the drive belt.
Express your answer in radiant per cecond to three significant figures.
▸ View Available Hint(c)
for Part A for Part A Part A Part A Vindo for Parredo to Part A for Part A keyboard shortcuts for Part A help for Part A
WB=
Submit
rad/s
Transcribed Image Text:The vacuum cleaner's armature shaft S shown in (Figure 1) rotates with an angular acceleration of a -4 rad/s², where is in rad/s Part A Determine the brush's angular velocity when ₤=35, starting from wo=2.0 rad/s, at t=0. The radi of the shaft and the brush are 0.30 In. and 1.2 In., respectively. Neglect the thickness of the drive belt. Express your answer in radiant per cecond to three significant figures. ▸ View Available Hint(c) for Part A for Part A Part A Part A Vindo for Parredo to Part A for Part A keyboard shortcuts for Part A help for Part A WB= Submit rad/s
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