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A 2.2 resistor and a 7.2 resistor are connected in series. A third resistor is connected in parallel with the 7.2 resistor. The whole arrangement gives a total equivalent resistance of 7.1. What is the value of the third resistor?
A beach ball with a radius of 0.5m is rolling along the sidewalk with a speed of 2m s-1. There is a light mist consisting of 3.1 small droplets of water.
A circular coil with an area A=.4400m^2 is rotating in a magnetic field B=2.70T at a frequency f=60Hz. what is the peak Emf induced in the coil
What is the maximum velocity.
A spacecraft has a nonrelativistic (or classical) momentum whose magnitude is 1.4×1014 kg·m/s. Find the relativistic momentum of the spacecraft
A card containing two slits separated center-to-center by 0.1mm, is illuminated by a red laser (lambda = 632:82nm). If the fringes on an observing screen are to be 10mm apart, how far away (in m) should the screen be?
A 497-turn solenoid has a radius of 8.75 mm and an overall length of 12.4 cm. If the solenoid is connected in series with a 2.50-? resistor and a battery, what is the time constant of the circuit
A massless spring hangs from the ceiling with a small object attached to its lower end. How far below yi is the new equilibrium (rest) position with both objects attached to the spring
Two people start at the same place and walk around a circular lakein opposite directions. How long will it be before they meet
The x-component of a velocity vector that has an angle of 45o to the +x-axis has a magnitude of 4.1m/s. What is the magnitude of the y-component of the velocity
A steel ball is fastened to a cord and is released from rest when the string is horizontal. At the bottom of its path theball strikes a steel block initially at rest on a frictionless surface as indicated. The collision is elastic.
A canonical transformation (q,þ) → (Q,P) is made through the generating function F(q,p) = q2P on the Hamiltonian H(q,þ) = þ/2xq2 + β/4 q4. Where α & β are constants. Find the equation of motion for (Q,P)?
A 5.10 kg object on a horizontal frictionless surface is attatched to a spring with spring constant 880 N/m. The object is displaced from equilibrium 50.0 cm horizontally and given an initial velocity of 8.9 m/s back toward the equilibrium point.
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