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- I hope you make your handwriting clear if you are going to write the solution by hand FIGURE S-35 Ic (mA) 60 600 HA 50- 500 uA 40 400 HA 30 300 uA O-point 20 200 HA 10 100 A 234 S6 7 8 9 10 Va (V) 9. From the collector characteristic curves and the de load line in Figure 5-35, determine the following: (a) Collector saturation current (b) VCE at cutoff (c) Q-point values of Ig. Ic. and VCE 1Howine:6- What is the total resistance of the mixed circuits shown in the following Figure? Note that each resistor has resistance 6.00. (a) R₁ R₁ R₂ R3 R₁ (b) R₁ Em سره سره R₂ R3 R₁ R₂ EmConvert the circuit from a T to a pi configuration
- For the circuit in shown in figure 5, find the value for unknown capacitor C2The high voltage arm of an RC divider has 10x100 ohms resistors with a 15-pF capacitor to the ground from each of the junction points. The ow voltage arm resistance is 10 ohms. Determine the capacitance need the LV arm for correct compensation.5. A Series RLC circuit consists of a 25-ohm resistor, a 0.221-henry inductor and a 66.3 microfarad capacitor. What should the voltage be if the current flowing through the series circuit is 2.5 Amperes?
- In DC / DC switching circuits, a resistor-inductance (r-l) circuit is usually connected to the load in series, and also a reverse parallel switching diode is connected to this inductance (l). Write down your comments and approaches about the purpose for which these connected resistance, inductance and diode elements are used by an engineer's approachNeed help with part 6 please. If you can at least do p6 a/b I would appreciate it and I can see how to do the remaining parts by following the work. Thank you5- Find the unknown quantities for the circuits of Figure below. * |2 A E U6 P = 12 W
- In the following circuit if Ipss-5mA &VGs-or5V, then Ip is cqual to RD Ike VID Var 5.33mA 0.0533 A 2.93 mA None of the above PageEmploying the characteristic curve in Figure 1 and obtain the design for a voltage divider configuration that has a Q point of ICQ = 5 mA and VCEQ = 8 V. Using VCC = 24 V and RC = 3RE. Find the following: *Just solve d), e) and f).* a) Draw the configuration indicating each of the elements b) Determine RC and RE c) Find VE d) Determine VB e) Calculate β for point Q f) Find R2 if R1 = 24 kΩCircuit theory I just want the final answer, I don't need the solution steps. I want the solution in less than 30 minutes, please