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Question: Use the complex impedance approach to formulate the transfer function matrix for the electrical circuit of Figure, considering that the input components are the voltages v1 and v2 and the output is formed of the meaningful currents. Known are all the electrical components' parameters.
You want to photograph a circular diffraction pattern whose central maximum has a diameter of 1.32 cm. How far behind the pinhole should you place the viewing screen
Consider a cargo ship, with a mass of 5.0×10^8kg . If it is pushed by a tugboat motor (force 8.0×10^6 N), what will be the magnitude of its acceleration
Four 7.0-kgspheres are located at the corners of a square of side 0.50m. Calculate the magnitude of the gravitational force exerted on one sphere which is in left and down corner of the square by the other three.
A certain source of soundwaves radiates uniformly in all directions. What is the total acoustic power output of the source
The gas is first cooled at constant volume until it reaches its final pressure. It is then allowed to expand at constant pressure until it reaches its final volume. Find the heat absorbed by the gas during this process
At the instant that the (pivoted) meter stick is released (so while the stick is still horizontal) what is the acceleration of the released end of the meter stick (neglect the pennies)
the generator at a power plant produces ac at 48000 v. a transformer step this up to 345000 v for transmission over
A particle of charge +13 µC and mass 2.50 10-5 kg is released from rest in a region where there is a constant electric field of +270 N/C. What is the displacement of the particle after a time of 1.30 10-2 s
A square wire loop (size L x L) carries current I. Find the magnetic field at the center of the loop
A 1.0 mCi source of Phosphorus called P-32, a beta emitter, is imlanted in a tumor where it is to administer 36 Gy. The half-life is 14.3 days and 1 mCi delivers about 10 mGy/min/ Approximately how long should the source remain implanted?
What is the magnitude of the auto average acceleration.
A car travelling east at 41.2 m/s passes a trooper hiding at the roadside. The driver uniformly reduces his speed to 25 m/s in 3.90 s.
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