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Question: Two coherent sources of radio waves, A and B, are 5.00 metersapart. Each source emits waves with wavelength 6.00 meters. Consider points along the line connecting the two sources.
a) At what distance from source A is there constructive interference between points A and B?
b) At what distances from source A is there destructive interference between points A and B?
At three corners of a rectangle (length 11.8 cm, height 5.9 cm), the following charges are located: q1 (upper left corner), q2 (lower right corner), and q (lower left corner).
A tennis player hits a 58.0 {\rm g} tennis ball so that it goesstraight up and reaches a maximum height of 6.17 {\rm m}. How much work does gravity do on the ball on the way up
Air in a cylinder is compressed to one-tenth of its actual volume without change in temperature. Obtain what percentage of the molecules has escaped
Two thin beams are joined end-to-end to make a single object. The left beam is 11.9 kg and 1.00 m long and the right one is 41.1 kg and 2.00 m long. What is the gravitational torque on the objects about an axis through its left end
A car rounds a curve that is banked inward. The radius of curvature of the road is R = 139, the banking angle is ? = 31°, Find the minimum speed that the car can have without slipping
A particle with a charge of ?1.0 ?C and a mass of 2.4 10-6 kg is released from rest at point A and accelerates toward point B, What is the potential difference VB ? VA between A and B
calculate the maximum range when radar operates at 10ghz and has peak power10 mwattsn ratio10dbantenna cross
Three identical uniform meter sticks are placed on the floor. The first stick lies along the y axis from y = 0.320 m to y = 1.32 m. calculate the location of the center of mass of the meter sticks
Consider an electron described by a wavefucntion as follows wave described by exp^i(kx + omega(t)) Obtain its wavelength, lambda, in terms of k.
A marble moving 1.48 m/s rolls off the top edge of a 125. cm high table. How far from the base of the table did it strike the floor
What energy (in J) is delivered to the tumour per second? Calculate the dose absorbed by the tumour delivered per second (in Gy/s)?
What is the average Impulse in N-s exerted on the ball? Assume all variables are known to 3 significant figures.
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