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1. Describe the relationship between scatter and beam energy. Discuss how the different types of photon interactions govern this relationship.
2. Derivation of the equation you used to calculate the linear attenuation coefficient of the penny material. Be sure to clearly define your variables.
A constant force, F = (4.63, ?3.79, 1.96) N,acts on an object of mass 18.9 kg, What is the total work done by this force
An ideal spring of negligible mass is 11 long when nothing is attached to it. When you hang a 3.20- weight from it, you measure its length to be 12.3.
A baseball of mass 0.3 kg is thrown into the air with a speed of 30 m/s. If the baseball is at a height of 10 m above where it was thrown, With what speed will it be travelling
Now imagine that the coil is subjected to a series of experiments, that we will label 1, 2, etc., for clarity. At the beginning of both experiments 1 and 2, the magnetic field is initially 3.0 T.
A tuning fork with a frequency of 288 Hz (D) is placed over anopen pipe which has one end submerged in water. If the temperatureof the air in the pipe is 22.0 Degree Celisus, how much of the pipehas to be out of the water in order to play the fundame..
A 1.8 cm --tall object is 15 cm in front of a diverging lens that has a -18 cm focal length. compute Is the image erect or inverted
a merry-go-round r=2m, initially at rest is given a constant tangential push that depends on time. F(t) =β(t) applied on the rim. β=10N/s, Calculate angular acceleration as a function of time
question an electron and a 0.0500-kg bullet each have a velocity of magnitude 450ms accurate to within 0.0100. within
A 4.3-m-tall, 50-cm-diameter concrete column supports a 1.0×105{\rm kg} load. By how much is the column compressed
A 4.0cm -tall candle flame is 2.0m from a wall. You happen to have a lens with a focal length of 42cm. what is the orientation of the image
A very large number (N+1) polaroids are arranged in a sandwich, The transmission axis of each polaroid is at a constant angle, with respect to its predecessor
A gymnast of mass 55.0 hangs from a vertical rope attached to the ceiling. You can ignore the weight of the rope and assume that the rope does not stretch. Use the value for the acceleration of gravity.
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