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The Question is how do you find the time when given distance and acceleration.(A car starts from rest accelerates uniformly at a rate 5.78m/s^2 for a distance of 115m.what is the final velocity?) so from that question how do you start and end the problem
An experimental measurement has a result 7.95 +- 0.01, and a predicted value of 8.00. What is the percent uncertainty in the measurement
A 2.0 kg object moving with a velocity of +8.0 m/s collides with a 8.0 kg object that is initially at rest. What is the coefficient of restitution for this collision
A student is reading a lecture written on a blackboard. If the writing on the blackboard is 4.84 cm high, what is the height of the image on her retina
When water is boiled under a pressure of 2.00 atm, the heat ofvaporization is 2.20 x 10^6 J/kg and the boling point is 120Degrees C. Compute the increase in internal energy of the water
A machine that makes transformers can only wind the coils with a single specific number density. what is length of the output coil
A 3.00-kg block is dropped from rest on a vertical spring whose spring constant is 750 N/m. How far is the spring compressed
to be safe the engineers making the ride want to be sure the normal force does not exceed 1.9 times each persons weight
A rubber balloon is rubbed against a wool sweater and acquired a charge of -1.6 μC. How many electrons were transferred from the sweater to the balloon?
In the figure below, a frictionless roller coaster car of mass m tops the first hill with speed v0 at height h. What is the speed of the car at (a) point A, (b) point B, and (c) point C? (d) How high will the car go on the last hill, which is too hig..
A plane, diving with constant speed at an angle of 53.0° with the vertical, releases a projectile at an altitude of 750 m. The projectile hits the ground 7.00 s after release.
Find an expression for acceleration a of a stationary observer in Schwarzschildspacetime and show that generally it does not vanish (as it would for a stationaryobserver in Newtonian gravitation).
The temperature of your skin is approximately 36oC. Find the wavelength at which the peak occurs in the radiation emitted from your skin
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