The system in the figure is in equilibrium. A concrete block of mass 300 kg hangs from the end of the uniform strut of mass 62.4 kg. For angles = 39.7° and 0 = 62.3°, find (a) the tension T in the cable and the (b) horizontal and (c) vertical components of the force on the strut from the hinge. (a) Number i (b) Number (c) Number i Units Units Units Strut T A -Hinge <

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The system in the figure is in equilibrium. A concrete block of mass 300 kg hangs from the end of the uniform strut of mass 62.4 kg. For
angles = 39.7° and 0 = 62.3°, find (a) the tension T in the cable and the (b) horizontal and (c) vertical components of the force on the
strut from the hinge.
(a) Number i
(b) Number
(c) Number i
Units
Units
Units
Strut
T
A
-Hinge
<
Transcribed Image Text:The system in the figure is in equilibrium. A concrete block of mass 300 kg hangs from the end of the uniform strut of mass 62.4 kg. For angles = 39.7° and 0 = 62.3°, find (a) the tension T in the cable and the (b) horizontal and (c) vertical components of the force on the strut from the hinge. (a) Number i (b) Number (c) Number i Units Units Units Strut T A -Hinge <
The system in the figure is in equilibrium. A concrete block of mass 300 kg hangs from the end of the uniform strut of mass 62.4 kg. For
angles = 39.7° and 0 = 62.3°, find (a) the tension T in the cable and the (b) horizontal and (c) vertical components of the force on the
strut from the hinge.
(a) Number i
(b) Number
(c) Number i
Units
Units
Units
Strut
T
A
-Hinge
<
Transcribed Image Text:The system in the figure is in equilibrium. A concrete block of mass 300 kg hangs from the end of the uniform strut of mass 62.4 kg. For angles = 39.7° and 0 = 62.3°, find (a) the tension T in the cable and the (b) horizontal and (c) vertical components of the force on the strut from the hinge. (a) Number i (b) Number (c) Number i Units Units Units Strut T A -Hinge <
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