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A baseball outfielder throws a 0.150 kg baseball at a speed of 39.0 m/s and an initial angleof 27.0°. What is the kinetic energy of the baseball at the highest point of its trajectory?
Explain, using thermodynamically sound principles, what each of the following temperatures represents: actual temperature, virtual temperature, dewpoint temperature,
determine the coefficient of static friction between a motorcycle tires and the pavement as he leans to the side in
A disk-shaped merry-go-round of radius 2.63 m and mass 155 kg rotates freely with an angular speed of 0.744 rev/s. find the initial and final kinetic energies for this system
Proton in a well. Figure 24-51 shows electric potential V along an x axis.A proton is to be released at x = 3.6 cm with initial kinetic energy 4.0 eV. The scale of the vertical axis isset by Vs = 10.0V.
A 500 gram dynamics cart starts at rest and rolls down a track thatis 2.5 meters long and elevated 15 cm on one end. At thebottom of the track it rolls onto a level surface and then collideswith a 1200 g cart that is sitting still. The collision i..
monochromatic light strikes a diffraction grating at normal incidence before illuminating a screen 2.10m away. find the distance between the two second-order maxima
A proton traveling 3.0 E 6 m/s enters half way in a capacitor and travels 2.00 E -3 meters before crashing into the bottom plate, What is the voltage applied to the capacitor from the battery
A figure skater is spinning at a rate of 1.0 rev/s with her armsoutstretched. What is her new rate of rotation
The capacitors are identical except that C2 has a dielectric inserted between its plates. A 210 V battery is connected across the combination until electrostatic equilibrium is established, and then the battery is disconnected.
a model train moves along a horizontal circular track with a radius of 0.5 m. starting from rest the train
a circular loop of wire of radius 12.1 cm is placed in a magnetic field directed perpendicular to the plane of the loop
A block of mass M=0.20 kg is attached to a spring with force constant k=12.0 N/cm. Calculate the period the resulting oscillations and the total energy of the system assuming no damping
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