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A 330g airtrack cart on a horizontal air track is attached to a string that goes over a pulley with a moment of inertia of 5.00*10^-6 kg*m^2 and a radius of 1.35 cm. a 255-g mass hangs from the other end of a string and is released. Write newtons second law for each of the three objects.
The masses of the earth and moon are 5.98 × 1024 and 7.35 × 1022 kg, respectively. find the magnitude of the charge placed on each body
Draw vectors indicating the normal force. suppose that the weight of the femur is negligible compared to the applied downward force.
What are the x-component and y-component of the velocity.
question a charging bull elephant with a mass of 5500 kg comes directly toward you with a speed of 4.20 ms. you toss a
two automobiles are equipped with the same single-frequency horn. when one is at rest, What is the frequency the horns emit
question a solenoid is designed to produce a magnetic field of 0.0270 t at its center. it has radius 1.40 cm and length
A flywheel 0.500 m in diameter pivots on a horizontal axis. A rope is wrapped around the outside of the flywheel, and a steady pull of 75.0 N is exerted on the rope. What is its moment of inertia about the rotation axis
A parallel combination of a 1.27 uF capacitor and a 2.67 uF one is connected in series to a 4.85 uF capacitor. FInd the charge of each capacitor
An isolated, irregularly shaped piece of platinum carries -8.59 × 10-9 C of charge and is in electric equilibrium. The size of this body is about 4 mm. Calculate the potential at a distance of 5.63 m from the center of the charged piece of platinum?
Calculate the smallest coefficient of static friction necessary for mass A to remain stationary.
A 67 kg man weighs 637 N on the Earth's surface. How far above the surface of the Earth would he have to go to "lose" 19 percent of the body weight.
A small but measurable current of 8.4 x 10-10 A exists in a copper wire whose diameter is 2.9 mm. calculate the current density and electron drift speed
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