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0:02:14
2.15 The barge B is pulled by two tugboats A and C. At a given instant, #statics #hibbeler
0:01:24
Determine the maximum speed that the jeep can travel over the crest of the hill and #dynamics
0:01:06
A test car starts from rest on a horizontal circular track of 80 𝑚 𝑟𝑎𝑑𝑖𝑢𝑠 and increases #dynamics
0:01:39
If block 𝐴 of the pulley system is moving downward at 6 𝑓𝑡/𝑠 while block 𝐶 is moving down #dynamics
0:02:52
Q (17) When the effect of aerodynamic drag is included, the y-acceleration of a baseball #dynamics
0:01:46
Q.7.Replace the loading acting on the beam by a single resultant force and coiple #statics #hibbeler
0:03:30
The eyebolt supports the four forces shown. If the net effect on the bolt #statics #hibbeler
0:02:44
Determine the magnitude and direction Ө of F so that the resultant force is #statics #hibbeler
0:01:42
Resolve the 30-lb force into components along the u and v axes #statics #hibbeler
0:02:19
2-28 Determine the magnitude of force F so that the resultant FR of the three for #statics #hibbeler
0:01:22
2-53Determine the magnitude of F1 and its direction θ so that the resultant force #statics #hibbeler
0:02:34
the pinewood-derby event shown, the car is released from rest at the starting position A #dynamics
0:03:27
Starting from rest at home plate, a baseball player runs to first base90 ft away #dynamics #hibbeler
0:02:12
The position of a particle which moves along a straight line is defined by the relation #dynamics
0:00:16
Newton’s second law
0:08:38
Determine the range of weights W of the uniform slender bar system will be in equilibrium. #statics
0:08:46
Find the resultant of the force system shown in the figure in magnitude, direction if A #statics
0:02:57
The uniform slender bar has an ideal roller at its upper end A. If coefficient of static #statics
0:02:58
The 10-kg uniform rod is pinned at end A. If it is also subjected to a couple moment of 50 #statics
0:03:08
To test the deflection of the uniform 200-lb beam the 120-lb boy exerts a pull of 40 lb #statics
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