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A 65.4 g ball moves at 34.8 m/s. If its speed is measured to an accuracy of 0.04%, what is the minimum uncertainty in its position? Answer in units of m.
the position of a water balloon from a 100m high cliff is given by rt 3ti t2j sin3.14t2km. find the location
The electric potential at a certain point in space is 12 V. What is the electric potential energy of a -3.0 micro coulomb charge placed at that point
Calculate Brewster's angle for light incident from water into air if the glass has an index of 1.333
A baseball player hits a home run and the ball lands in the left field seats, 7.6 meter above the point at which the ball was hit. Determine the initial velocity of the ball when the ball leaves the bat
In a ballistics test, a 25.00 g bullet travelling horizontally at 1300m/s goes through a 20.00 cm thick 450 kg stationary target and emerges with a speed of 800m/s. The target is free to slide on a smooth horizontal surface. How long is the bullet..
It first travels 360 km due northwest to just off the coast of northern California and then turns due north and travels 400 km toward its destination.
An iron bar of mass, 0.37 kg, slides down a frictionless incline 0.67 m high. What is the speed of the combined masses after collision
A flywheel has zero thickness at the center and is h thick at the edge, and has a radius R, and has a total mass M. Calculate the energy stored if it rotates in time
The Earth has a radius of approximately 6.37 x 10 ^ 6 meters (m). Determine the surface area of the Earth in square kilometers
A 25.0g arrow is shot through a 7.8 cm apple. If the arrow enters the apple at 38.8 m/s and emerges with a speed of 30.10m/s in the same direction, what is the magnitude of force with which the apple has resisted the arrow.
In the first-order spectrum, maxima for two different wavelengths are separated on the screen by 3.10 millimeter. Compute the difference between these wavelengths
You accelerate at exactly 10 feet/second 2 for 15.4 seconds. How fast are you going, in feet per second at the end of this time?
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