A 360-kg object is supported on a wire attached to a 15-m-long steel bar that is pivoted at a vertical wall and supported by a cable, as shown in the figure. The mass of the bar is 97 kg. he cable attaches to the bar 5.0 m from the lower end, as shown. (Define right and up to be the positive directions.) What is the tension T in the cable? 10 m 60° 15 m 5m 360kg Tipler & Mosca, Physics for Scientists and Engineers, 6e 2008 W.H. Freeman and Company What is the force Fw exerted by the wall on the steel bar? T = 10411.49 Incorrect N

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A 360-kg object is supported on a wire attached to a 15-m-long steel bar that is pivoted at a vertical wall and supported by a
cable, as shown in the figure. The mass of the bar is 97 kg. he cable attaches to the bar 5.0 m from the lower end, as shown.
(Define right and up to be the positive directions.)
What is the tension T in the cable?
10 m
60°
15 m
5 m
360kg
Tipler & Mosca, Physics for Scientists and
Engineers, 6e © 2008 W.H. Freeman and
Company
What is the force Fw exerted by the wall on the steel bar?
T =
Incorrect
Fw
10411.49
= 9045.44k
Incorrect
N
N
Transcribed Image Text:A 360-kg object is supported on a wire attached to a 15-m-long steel bar that is pivoted at a vertical wall and supported by a cable, as shown in the figure. The mass of the bar is 97 kg. he cable attaches to the bar 5.0 m from the lower end, as shown. (Define right and up to be the positive directions.) What is the tension T in the cable? 10 m 60° 15 m 5 m 360kg Tipler & Mosca, Physics for Scientists and Engineers, 6e © 2008 W.H. Freeman and Company What is the force Fw exerted by the wall on the steel bar? T = Incorrect Fw 10411.49 = 9045.44k Incorrect N N
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