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Problem: A concave mirror has a radius of curvature equal to 21 cm. Use the mirror equation to calculate the image distances for the object distances given below.
Part A: Calculate the magnification for each given object distance?
Please show me how work it out above problem.
A car accelerates from 10 m/s to 30 m/s at a rate of 3.0 m/s^2. How far does it travel while accelerating
A horizontal 799-N merry-go-round is a solid disk of radius 1.45 m, started from rest by a constant horizontal force of 49.9 N applied tangentially to the edge of the disk
Two circular loops are centered on the x-axis parallel to the yz-plane. The smaller loop is stationary with radius r=0.02m, and resistance R=0.003Ohms. The larger loop has radius, s=0.2m, carries current I=1.5A, and moves towards the smaller loop ..
question a diffraction pattern forms when light passes through a single slit. the wavelength of the light is 618 nm.
The second-order dark fringe in a single-slit diffraction pattern is 1.40 mm from the center of the central maximum. Calculate the wavelength of the incident light
In a student experiment, a constant-volume gas thermometer is calibrated in liquid nitrogen (?196°C) and in boiling allyl alcohol (97°C). What value of absolute zero does the calibration yield
a system with an initial volume of 2 m is filled with water at 3 mpa 400 deg c.it is now cooled at constant volume to
In a certain right triangle, the two sides that are perpendicular to each other are 3.40 m and 7.30 m long. What is the tangent of the angle for which 3.40 m is the opposite side
A bicyclist starts from rest at the top of a hill and rolls down the hill without pedaling. what is the bicyclist's speed at the bottom of the hill
If the block comes to rest in 1.3m, what is the coefficient of kinetic friction between the block and the surface
a heat engine has an efficiency of 65.0% and receives 150 J of heat per cycle. How much work does it perform in each cycle
A wire 30 centimeter long with an east-west orientation carries a current of 3 Amp eastward. evaluate the direction and magnitude of the magnetic field
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