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You are driving home from school steadily at 95 km/h for 18km. it begin to rain and you slow to 65km/h. you arrive home after driving 4.5h. How far is your hometown from school? What was your average speed?
a rod of mass m and length l l 3m is pivoted on a frictionless hinge at the end. the rod is held at rest horizontally
A spring of spring constant k=12.50 N/m is hung vertically. A 0.5000 kg mass is then suspended from the spring. What is the displacement of the end of the spring
A generator rotates at 71 hz in a magnetic field of 5.0x10^-2 T. It has 1000 turns and produces an rms voltage of 150v and an rms current of 52A. a) What is the peak current produced? b) What is the area of each turn of the coil?
Find the range of visible wavelengths of light in Plexiglas. (Assume that the range of visible wavelengths of light in air is 380 - 760 nm.)
There are 4 charges assembled into a square 2 cm on a side, q1= 1nC, q2= 2nC, q3= 3nC, and q4= 4nC. What is the potential at the center of this arrangement
A rectangular block of ice with dimensions 2 meter by 2 meter by 0.2 meter floats on water. A person weighing 975 Newton wants to stand on the ice. Find would the ice sink below the surface of water
The crystalline lens of the eye is double convex and has a typical index of refraction of 1.43. Find the max and min power (in diopters) of the crystalline lens if it were in air
An electron is in a certain energy state in a one-dimensional, infinite potential well from x = 0 to x = L = 150 pm. What is the change in the electron's energy
What is the maximum load that could be suspended from a copper wire of length 1.0 m and radius 1.0 mm without breaking the wire? Copperhas an elastic limit of 2.0 x 10^8 Pa and a tensile strength of 4.0 x 10^8 Pa.
What is the wavelength of radio waves. An electron in a TV is accelerated toward the screen across a potential difference of 54.2kV. How much kinetic energy does the electron gain while accelerating.
A thin stream of water flows smoothly from a faucet and falls straight down. Obtain what is the vertical distance between these two points
A 2.20 kg mass on a spring has displacement as a function of time given by the equation x(t)= (7.40 cm) cos [4.16 rad/s) t - 2.42 rad]. Find the time for one complete vibration
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