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Calculate the minimum thickness of a soap bubble film that results in constructive interference in the time reflected light if the film is illuminated with light whose wavelength in free space is λ = 600nm. The index of refraction of the soap film is 3.3
point charges of -10 microc 1.0 microc and 10 microc are located along the x axis at x -1.0 cm x 0 and x 1.0 cm
A novice skier, starting from rest, slides down a frictionless 13degree incline whos vertical height is 125m. how fast is she going when she reaches the bottom
A rock is thrown vertically upward from ground level at time t=0. At t=1.5s it passes the top of a tall tower. What is the height of the tower
Illustrate what are these accounting shenanigans? Briefly explain each. Do internet research to answer the question.
High-speed stroboscopic photographs show that the head of a 200-g golf club is traveling at 45 m/s just before it strikes a 46-g golf ball at rest on a tee. Find the speed of the golf ball just after impact
A 2.20 H coil with a resistance of 2.18×10^2 ohms is in series with a 1.29×10^3 ohms resistor. What is the peak value of the potential difference across the coil
A laboratory vacuum pump can reduce the pressure to 1.0 × 10^-7 Pa. If the volume of the chamber is 0.500m^3 and the temperature is 27°C
A radio station broadcasting on a frequency of 106 MHz is received with an astronaut headed toward the station at a speed1.0×107 m/s. To what frequency should the astronaut's radio be tuned?(MHz)
If the hot water is to meet the heating requirements of this room for a 24-h period, determine the minimum temperature of the water when it is first brought into the room. Assume constant specific heats for both air and water at room temperature.
An object falls off of a pier and into the ocean (sea water) where it displaces a total volume of 1.6 cubic meters of sea water. What is the buoyant force acting on the object
The ball falls all the way down and strikes the water below. Determine the magnitude of the velocity of the stone just before it strike the water.
the position of a particle is given by the expression x=4cos(3pt+p), where x is in meters and t is in seconds. estimate the frequency and the period of the motion
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