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In a Young's double-slit experiment, a set of parallel slits with a separation of 0.150 millimeter is illuminated by light having a wavelength of 584 nanometer and the interference pattern observed on a screen 3.50 meter from the slits.
(a) Find the difference in path lengths from the two slits to the location of a third order bright fringe on the screen? µm
(b) Obtain the difference in path lengths from the two slits to the location of the third dark fringe on the screen, away from the center of the pattern? µm
Two stunt drivers drive directly toward each other. At time t=0 the two cars are a distance D apart, car 1 is at rest, and car 2 is moving to the left with speed v0, At what time do the two cars collide?
An astronaut notices that a pendulum which took 2.45 {\rm s} for a complete cycle ofswing when the rocket was waiting on the launch pad takes1.26 {\rm s} for the same cycle of swingduring liftoff. What is the acceleration of the rocket
An astronaut in space cannot use a scale or balance to weigh objects because there is no gravity. But she does have devices to measure distance and time accurately. What is the mass of this canister
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a how many fringes appear between the first diffraction-envelope minima to either side of the central maximum for a
A 200g block is released from rest at a height of 25cm on africtionless, 30o incline. Will the two blocks collide again
brooks city has three consolidated high schools each with a capacity of 1200 students. the school board has partitioned
Assume that the terminal speed of a particular sky diver is 180 km/h in the spread eagle position and 305 km/h in the nosedive position. obtain the ratio of the effective cross sectional area A in the slower position to that in the faster position
X rays diffract from a crystal in which the spacing between atomic planes is 0.179nm. The second-order diffraction occurs at 51.0 degrees. What is the angle of the first-order diffraction?
Find the scattering matrix S for a single δ-function potential V(x)=-(hbar^2)λ/(2ma)δ(x)
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