In the circuit shown, determine the voltage across resistor R2. R2 2K D1 D2 D3 R1 9V 2K
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- From the circuit determine the current through the 10 kilo-ohm resistor at terminals a-b, micro-ampere. a. 238.0952 b. 692.6407 c. 21.6450 d. 123.2412 e. None of the aboveFind the branch current of R1. 400- RI 680 1 R2 R3 900 |-|-Two resistors R1 and R2 are connected in series and values of resistance are give.What is uncertainty when they connected in series.
- a) Draw and explain the equivalent circuit and V-I characteristics of the UJT in detail. b) A UJT circuit is shown in figure 2. The parameters of the UJT are n = 0.65 and RBB = 7 km. i. Find RBI and RB2. ii. Determine the value of VB1B2 and Vp. R₂ R₂ 400 £2 B₂ 20 100 £2 Figure 2A voltage divider of 50 ohms is connected across a 100 V DC source. A load resistance of 10 ohms is connected across a tap in the potential divider and the negative of the source. If a current of 4 A flows towards the load, what is the current supplied by the source? (Remember, a voltage divider is a network of resistors that are connected in series the purpose of which is to divide a voltage into each of the resistors.) Show complete solution.A Wheatstone bridge is used for measuriug the valuc of change of resistance of a strain gauge wnich forms one of the arms of the bridge. All tbe arms of the bridge including the strain gauge have a resistance of 100 N each. The maximum a!lowable power dissipation from the strain gauge is 250 mW. Determine the value of maximu:n permissible current through the strain gauge and maximum allowable value of bridge supply voltage. Suppose a source of 20 V is available, lind the value of series resistance to be connected between the source and the bridge to limit the input voltage of the bridge to permissible level.
- Determine the voltage through the 10 kilo-ohm resistor at terminals a-b. a. 0.21645 b. 6.9264 c. 1.2324 d. 2.3810 e. None of the aboveDetermine the nodes/junctions, Current (I), Loops, Voltage drop on each Resistor (R), and Power (P) on each Resistor (R) with the following given and illustration: Use the following given for batteries and resistors (color bands for your value of resistors, use the lower limit). R1 = red red black goldR2 = orange green black silverR3 = white orange black goldR4 = green violet brown goldR5 = violet red black silverR6 = yellow green black silverR7 = brown black black gold V1 (lower left) = 100VV2 (top center) = 150VV3 (lower right) = 200VI need help with part d and part e. Please show clearly how to solve those parts. Thank you.
- Look at the images shown. Why can we measure resistance with a pencil drawn on a piece of paper? What is the component/material that is on the pencil that gives a high resistance? With the values given on the images, what are the corresponding color codes (indicate tolerance using a 4-band color code scheme)? If the first value is connected in series with the other value, what is the total resistance? If it’s parallel what is the total resistance? 0.449 mega ohms 102.2 kilo ohmsQuestion T ir1= ir2 = id1= Vr1= V1 Vr2 = D1 Given the circuit above, determine the current across R1 (ir1), R2 (ir2) and D1(id1), determine the voltage across R1 (vr1) and voltage across R2 (vr2). Determine the parameters using an input voltage of 8 volts MBR0520L VR1 M R1 10k 2 Activate Windows 8:50 AMB2 Determine the value of the load resistance Ri. shown in figure that give s maximum power dissipation. Also find the value of the power. 24V RL 82 20