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A block of wood of mass 0.88 kilogram is initially at rest. A bullet of mass 0.049 kilogram traveling at 101.7 meter per second strikes the block and becomes embedded in it. Find with what speed do the block of wood and the bullet move just after the collision?
A disk with the radius 0.60 m begins at rest and is then spun up to a high speed by applying an angular acceleration of 0.25 rad/s^2 for 20 seconds. What is the final angular velocity of the disk
The clapper is a small, 1.8 kg mass attached to one end of a slender rod that has length L and negligible mass. The other end of the rod is attached to the inside of the bell
A downward force of 3.0N is exerted on a -8.8C charge. What is the direction of the electric field at this point? What is the magnitude of the electric field at this point?
A 116 gram cube of ice at 0°C is dropped into 1.0 kilogram of water that was originally at 82°C. Determine the final temperature of the water after the ice has melted
n = 4.13 mol of Hydrogen gas is initially at T = 335 K temperature and pi = 1.73×105 Pa pressure. How much entropy did the gas emit
a proton beam in an accelerator carries a current of 115 microa. if the beam is incident on a target how many protons
Two particles having equal signed charges of 12nc are placedat two of the vertices of an equilateral triangle, What is the magnitude of the electrical field at the third vertex of the triangle
suppose you wanted to push this crate up the ramp. the crates weight is 100 n and the maximum frictional force the ramp
What is the potential difference across capacitor. How much charge is on each place.
A 1700 kg car travelling at a speed of 15m/s skids to a halt on wet concrete where f_k =.5. How long is the cars skid marks.
Light of wavelength 600 nm falls on a 0.45 mm wide slit and forms a diffraction pattern on a screen 1.5 m away. Discover the position of the first dark band on each side of the central maximum. Discover the width of the central maximum.
The water was originally at 0°C. The specific heat of water = 1.00 kcal/kg×°C, The original temperature of the ice was:
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