Lab. #7 Current and OHM law 12. Calculate voltage Vi and current Ii for each resistor in following Case 1 where Resistor R1,2,3,=1, 2, and 3 2, Vo=2V R1 R2 Case 1 vo
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- Using the rules for parallel circuits and Ohmslaw, solve for the missing values. ETE1E2E3E4ITl1I2l33.2AI4RT3.582R116R210R3R420PTP1P2P3P4Estimate voltage E2 when E1=90sin2400t V, R1=R2=20 ohms, L1= L2=3mH and M=0.15mHO * 33% A moodle1.du.edu.om e SIM aY The measured temperature is 173 OF and the reference is 45 °F. The voltage. in mV is Select one: O a. 4.643 O b. 4.097 O e. 3.732 O d. -3.732 Previous page Next page
- Figure 2 4. Consider the circuit in Figure 3. D1 is Gallium arsenide and D2 is Silicon, each has a forward resistance of 500. Determine the following: a. The states of D1 and D2. Explain. b. Current 11 through R1 c. Current 12 through R2 d. Current 13 through R3 e. Voltage Vo Liv Hilt R1 1092 V1 12V (+2) V1 D1 1V 50Hz 0° 1 D1 R2 1592 Figure 3 5. Do number 4 again, but this time reverse both the positions of D1 and D2. 6. Consider the circuit in Figure 4. a. Calculate the voltage across R3 during the positive half cycle of the source voltage V1. b. Calculate the voltage across R3 during the negative half cycle of the source voltage V1. c. Sketch the waveform of the voltage across R3. R1 1kQ V2 9V D2 R3 10092 R2 1k92 D2 Vo R3 1k92Coverage: Series and Parallel Combinations, and Ohm's Law Question: If simplified, the next figure shall be: - (a) A and the series of three resistors. - (b) A and the parallel of three resistorsDetermine the equivalent resistance across the terminals if R1 = 2R2 = 3R3 = 4R4.etc. and R11 = 3 ohms. R. Ry RI R.
- Using IC that is approximately equal to IE. Determine the value of R1in ohms, when VCC=17V, RC=2235 ohms, RE=335 ohms, VC=7 V and R2=6038ohmProblem 452 16V for circuit shown in figure, find the current in each resistor. Itas ce1. The no-load terminal voltage of a battery is 30 V. The terminal voltage drops to 22 V when supplying a current of 5 A. Determine the emf and the internal resistance of this battery. 2. Two identical zinc carbon batteries are available. When connected in series, they supply 0.5 A to a 4 ohm resistor. When connected in parallel, they supply 0.4 A to a 5 ohm resistor. Determine the emf and internal resistance of each battery. 3. When supplying a current of 5 A, the terminal voltage of a battery is 15 V. The battery is then recharged at a rate of 3 A and the terminal voltage is found to be 21 V. Determine the emf and the internal resistance of the battery. 4. A battery with an emf of 12 V and an internal resistance of 0.8 ohm is to be recharged through a 20 V source. (a) show by means of a diagram the connection of the circuit elements. (b) What is the current in the circuit? (c) The recharging current is to be limited to 3 A. What is the value of the limiting…
- A 230-V, 1 000-c/s voltage is applied to a resistor in series with C capacıtance 0 06 µF, the reading is 100 V. Find the current when the voltmeter is disconnected. 86 0 05 µF. When C is shunted by a voltmeter of [0 0527 A.]The following figure shows: 2Ix Oa. A dependent current controlled current source Ob.A dependent current controlled voltage source OC. A dependent voltage controlled current source Od.A dependent voltage controlled voltage source +1Please answer it with further explanation. badly need it What are your observations in this table below. How this reverse bias condition and forward bias condition affects current and voltage. This data was simulated using multisim. You can notice the increasing value of battery voltage in 2nd column.