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1. A band-pass filter has fC1 = 5kHz and fC2 = 88kHz. Calculate Bandwidth (BW) and center frequency (fo) for this filter.
2. A series RCL circuit consists of a 50 Ω resistor, 500 Ω capacitor, and a 50 Ω inductor. What is the angle of impedance?
3. A filter that rejects the high frequency components of a signal is a _____.
4. Calculate the IL, IR, in polar notation, for the following circuit.
you are moving into an apartment and take the elevator to the 6th floor. suppose your weight is 663 n and that of your
Find the energy transferred in 1 h by conduction through a concrete wall 2.2 m high, 3.90 m long, and 0.20 m thick if one side of the wall is held at 20°C and the other side is at 5°C
A sledge loaded with bricks has a total mass of 17.1 kg and is pulled at constant speed by a rope inclined at 19.9° above the horizontal. how much work is the roping doing on the sledge
A 10:0 kg mass starts at the top of an incline that is 8:0 m long and makes an angle of 400 above the horizontal. As it slides down, there is a constant frictional force of 23:8 N . What is its speed at the bottom?
A singly ionized helium atom (He+) has only one electron in orbit about the nucleus. What is the radius of the ion
A weight lifter struggles but manages to keep a heavy barbell above his head. Is one force larger than the other or are they equal in magnitude to each other
A violin string vibrates at 294 Hz whenunfingered. At what frequency will it vibrate if it is fingeredone third of the way down from the end
a ball is thrown vertically upwards into the air. it rises a vertical distance of 3.1 m before falling to the ground.
The temperature of 2.00 moles of argon gas is lowered from 2.80 x 10^2 K to 1.90 x 10^2 K. Find the change in the average kinetic energy per atom.
Waves on a 10 meter rope travel at 20 m/s. You shake the rope back and forth until you get a standing wave with a single antinode. find the wavelength and frequency of each standing wave
A nylon guitar string has a linear density of 7.0 g/m and is under a tension of 155 N. The fixed supports are distance D = 90.0 cm apart. The string is oscillating in the standing wave pattern shown in Figure 16-39
A block is projected up a frictionless inclined plane with initial speed v1 = 3.54 m/s. The angle of incline is θ = 32.8 degree. Determine how long does it take to get there
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