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A bird watcher meanders through the woods, walking 1.28 km due east, 1.99 km due south, and 4.56 km in a direction 53.9 ° north of west. The time required for this trip is 3.047 h. Determine the magnitudes of the bird watcher's (a) displacement and (b) average velocity.
Visible light passes through a diffraction grating that has 900 slits per centimeter, and the interference pattern is observed on a screen that is 2.42 from the grating. What is the difference between these wavelengths
A playground merry-go-round has a disk-shaped platform that rotateswith negligible friction about a vertical axis. The disk has a massof 200 kg and a radius of 1.9 m. A 34- kg child rides at the centerof the merry-go-round while a playmate sets it..
You are given a thin circular ring of radius a that has a charge uniformly distributed on it with a linear charge-density λ. Find the increase in the tension in the ring
What is the approximate distance between the Earth and the Moon if the radius of the Earth is approximately 6x10^6m
The aluminum cable of a high-voltage transmission line carries a current of 600 A. What is the power lost to Joule heating in this cable
two wheels of mass m and moment of inertia i are connected by a massless axle of length l. the system rests on a
A circuit consists of a resistor in series with an inductor and an ac generator that supplies an rms voltage of 115 V. Find the average power dissipated in the circuit
In the circuit shown in figure voltage of the battery is 12.0 V, and capacitors have the following capacitances: C1 = 2.22 mF, C2 = 3.16 mF, C3 = 4.66 mF, C4 = 5.48 mF. What is the equivalent capacitance of the four capacitors?
Use ray tracing to find the position of its lamp when the patient is positioned 1.4 m from the mirror (you'll need a careful drawing to get a good answer). Do this on paper. Your instructor may ask you to turn in this work.
question in a series rl circuit a 1.2-khz oscillating emf has amplitude epsilonmax 24 v and the current amplitude is
Two point charges lie along the y-axis. A charge of q1 = -7 uC is at y = 6, and a charge of q2 = -6.5 uC is at y = -4 m. Locate the point (other than infinity) at which the total electric field is zero.
Find the electric potential as a function of time at point (0.2, 0.4, 0.0) use K * (Px(t)^x + Py(t)^y + Pz(t)^z) / (divided by) r^3
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