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A piano tuner hears one beat every 2.16 s when trying to adjust twostrings, one of which is sounding 443 Hz, so that they sound thesame tone. How far off in frequency is the other string?
Derive an expression for the entropy of NE atoms of the element E adsorbed on M (per square centimeter) assuming that the adsorbing atoms have zero interaction energy with each other. They do, of course, have an interaction energy with the surf..
In an L-R-C series circuit L=0.500 H, R=380.0 ohms, and C=7.50 microF. The voltage amplitude of the source is 250.0 V. Find the rms voltage across the capacitor
A light ray travels through medium #1 and crosses a boundary into water at an indicent angle of 21.8 degrees. what is the energy of one photon of this light
A particle of charge Q is fixed at the origin of anxy coordinate system. At t = 0 a particle(m = 0.776 g, q = 5.04 µC is located on thex axis at x = 18.7 cm, moving with a speed of39.8 m/s in the positive y direction.
An ice skater slides (without pushing) across a frozen pond for 25.0 m before coming to a stop. If the coefficient of kinetic friction is 0.050, how fast was the skater initially moving
Find the electric field strength from the wire. How long is each spring when hanging as shown.
An infinite plane of surface charge density +.2uC/m^2 is in the y-z plane at x=0, What is the magnitude of the electric field close to the surface
A 95.0A current circulates around a 2.30-mm-diameter superconducting ring. What is the ring's magnetic dipole moment
Suppose both skaters are initially moving v, but one has mass m and the other 2m. What point do they rotate about after they meet? What is the linear velocity of this point? What is the angular velocity of the system
As an example, consider a coil of diameter 2.00 cm with 72.0 turns that is rotated about an axis perpendicular to the field at a rate of 20.0 Hz. If the maximum induced emf in the coil is 6.00 V, find out the strength of the magnetic field.
Which of the following must be true if we are to infer (calculate) a star's luminosity directly from the inverse square law for light.
If the sprinter from the previous problem accelerates at that rate for 20 m, what will be his time for the race
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