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- DI D2 AC D3 D4 R What is the waveform across D1? a) halfwave b) fullwave c) sinewave d) DC line What is the waveform across D3? a) halfwave b) fullwave c) sinewave d) DC lineElectrical Engineering Question 1 Is the FSM a Mealy or Moore machine? Choose '0' for Mealy and '1'for Moore. Reset So 0100 Format: 0/000 X/Y,Y;Y, 1/000 0/010 1/010 1/001 Answer : • Do not enter space before and after the answer • Do not press Enter after the answerFind dia = Is/I, in the figure Shown %3D 2Ta 22291 I, (T I1/2 2027 3Î Is
- If the voltage V, = 800 mV, then the current flowing in the load I, is: %3D -j20n Select one: O a. None of these O b. Is 100 <-90° mA O c. Is 5.0<.-90° A O d. Is 5 <90° mA ellso then how is Rth 0.8695 kOhms in the original explanation?Activity 1: You are testing an electrical device which can be modelled by the figure shown below: 18 -j12 a b j6 -j10 it E1 12 13 E2 13 The above electric circuit can be characterized by the following equations: 1811 + j6(11 – 12) + 4(11 – 12) = 1020° -j1212 + 8(12 – I3) + 20490° + 4(I2 – 4) + j6(I2 – I1) = 0 -j1013 + 1313 – 20290° + 8(13 – 12) = 0 Find I1, I2, and I3 using the Gaussian elimination method.
- Identify which measurement this oscilloscope time difference reading is useful for. Oscilloscope-XSC1 Time 250.000 us 1.261 ms Channel_A 169.064 V 168.513 V -550. 584 mV Channel_B 89. 282 V 95.005 V 5.722 V Reverse T2-T1 1.011 ms Save Ext. trigger Timebase Scale: 200 us/Div : Scale: 100 V/Div X pos. (Div): 0 Channel A Channel B Scale: 100 V/Div Y pos. (Div): 0 Trigger Edge: F Level: 0 A B Ext Y pos. (Div): 0 V Y/T Add B/A A/B AC DC AC DC Single Normal O period O none of the above O phase shifta) Find I, in the circuit in Fig. P11.7 b) Find VAN- c) Find VAB- d) Is the circuit a balanced orunbalanced three-phase system?Calculate the output voltage for the circuit given. The value of input voltage can be taken as 2mV, load resistor has a value of 10K Ohm and Beta has a value of 100. You MUST include the value of re' in the calculations. Please make wave-forms at each point. Vcc +20V Rc 3.3 kN C3 33 k2 out I µF RE 330 N ER2 10 ΚΩ RE2 330 2 C2 10 μF