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Question 1: Fin I in the network shown below. (Round to 2 decimal digits.)
Question 2:Find V1, V2 and V3 in th ecircuit shown below.
Question 3:For the circuit shown below find i1 and i2. Round to 2 decimal places.
Question 4:Three lightbulbs are connected in series to a 250-v battery as shown in the figure below. Find the current I through the bulbs. (Round to 2 decimal places)
Question 5:Use Ohm's and Kirchoff's laws on the circuit shown below to find iin. (Round answer to a whole number)
Question 6:For the circuit below, determine which components are absorbing power and which ones are supplying power? By how much?
I)Design a circuit that gives you the following relation between input and output Vout = 2.17Vin + 5 Here are the constraints you need to work with: 1) Only one power supply that gives ±12V is available 2) Available op-amps run on ±12V
draw a block diagram of an armstrong-type fm bradcast transmittercomplete from the microphone input to the antenna
Compute the minimum required op amp gain.
You must work the problem and also find the results using any of the available software (Mutisim, PSpice, Proteus, etc.) You will be asked to explain your results in next Class meeting (oral explanation).
The 6 X 12-in. timber beam has been strengthened by bolting to it the steel reinforcement shown. The modulus of elasticity for wood is 1.8 X 106 psi and for steel is 29 X 106 psi.
A thermocouple is installed in the exhaust of an incineratorused to deodorize fumes from a corn chip fryer. The electronic instrumentation isdesigned to employ type K thermocouples and the temperature is inthe range of 600oC.
A 1-cm by 2-cm solar cell has a conversion efficiency of 9%. Determine the maximum power rating of the device.
The charge carried by an electron is ?1.60×10?19 C. Suppose that an electron moves through a voltage of 120V from the negative polarity to the positive polarity. How much energy is transferred Does the electron gain or lose energy
Find the electric flux density field everywhere in space produced by two concentric spherical shells of surface charge density +ro and -ro of radius ‘a' and ‘b', respectively, where a
(a) From Figure, compute the length of time required for the average grain diameter to increase from 0.01 to 0.1 mm at 500oC for this brass material. (b) Repeat the calculation at 600°C.
If the counter is used to hold the number of elapsed seconds since an event hasoccurred, how much time can be represented before the counter overflows and the result is erroneous.
Find the number of turns N1 required to establish a flux = 12 x 10-4 Wb in the magnetic circuit of given figure.- Find the permeability m of the material.
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