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A rectangular loop of resistance R = 0.001 Ohms, measuring x = 0.15 m by y = 0.07 m, is projected with velocity v = 6.2 m/s, parallel to the x side, into a region where the magnetic field is B = 0.7 T in the z direction. If the mass of the loop is m = 0.038 kg, compute the EMF around the loop, the induced current in the loop, the net force on the loop, and its acceleration as it enters the field.
two objects are orbiting each other under the influence of the force of the gravitation force between them. object 1
Two objects of mass m and 9m undergo a completely inelastic collision in one dimension. what was the ratio of their speeds before the collision
A block of mass M = 0.8 kg hangs at the end of a massless spring. What is the new equilibrium extension of the spring
Pendulum A is a physical pendulum made from a thin, rigid, and uniform rod whose length is d.
one of your classmate has a friend with a boat. here is your classmate on water-skis being towed. in the absence of friction your classmate (m=62kg) would accelerate at 2.23m/s^2.
Four identical point charges (+ 2.50 nC) are placed at the corners of a rectangle which measures 2.00m x 4.00m. If the electric potential is taken to be zero at infinity
A 90.0 kg fullback running east with a speed of 5.00 m/s is tackled by a 95.0 kg opponent running north with a speed of 3.00 m/s. Calculate the speed of the two players just after the tackle
While a roofer is working on a roof that slants at 39.0 degrees above the horizontal, he accidentally nudges his 93.0 N toolbox, causing it to start sliding downward, starting from rest.
What is the caused by sun wind in upper atmosphere
A group of charges is found in space. At a distance of 100 cm from the group of charges, the total electric flux through a Gaussian sphere is found to be 517 N·m2/C. What is the potential along the Gaussian sphere
A helium-neon laser of the type often found in physics laboratories has a beam power of 4.00 mW at a wavelength of 633 nm. Calculate the force exerted on this sphere
If the car starts at height h= 3.00 R and the radius is R_1 = 24.0 m, compute the radial acceleration of the passengers while the car is at point C, which is at the end of a horizontal diameter.
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