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A 55.0-turn circular coil of radius 5.40 cm can be oriented in any direction in a uniform magnetic field having a magnitude of 0.455 T. If the coil carries a current of 23.5 mA, find the magnitude of the maximum possible torque exerted on the coil.
If 0.260kg of blood at a temperature of 37.0 ? C flows to the surface and loses 1400J of heat, what is the temperature of the blood
A motorcycle has a constant speed of 27.7 m/s as it passes over the top of a hill whose radius of curvature is 168 m. determine the normal force that acts on the cycle
An object is 5 cm from an equi-convex lens of focal length f=15 cm, What is the position of the image
A slit of width 0.19mm is illuminated with monochromatic light of wavelength 632.8 nm. At what angle will the first minimum occur
The magnitudes of the four displacement vectors shown in the drawing are A = 11.0 m and is 20 degrees N of West, Determine the magnitude and directional angle for the resultant
In an insulated vessel, 260 g of ice at0°C is added to 630 g of water at19.0°C. What is the final temperature of the system? How much ice remains when the system reaches equilibrium?
Two tuning forks oscillating coherently and in phase at 12000Hz are separated by 0.35m. What is the phase angle difference between the waves
Two parallel plates of area 190 cm2 are given charges of equal magnitudes 6.0 x 10-7 C but opposite signs. Calculate the dielectric constant of the material
Suppose a 32.0 kg child sits 1.37 m to the left of center on the same seesaw as the problem you just solved. A second child sits at the end on the opposite side, Find the normal force acting at the pivot point
A merry-go-round starts from rest and reaches the angular speed of 4 rpm in the first two minutes. What would be the angular acceleration of the merry-go-round
In the quark model of fundamental particles, a proton is composed of three quarks: two "up" quarks, each having charge +2e/3, and one "down" quark, having charge -e/3. Suppose that the three quarks are equidistant from one another. Take the distance ..
The position of a particle is given in cm by x = (7) cos 4pt, where t is in seconds. Find the maximum acceleration of the particle
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