SOLVE WITHOUT ARTIFICIAL INTELLIGENCE, BY HAND LEGIBLE 2.- Consider the following diagram, the value of R1 = 8kQ, R2 = 2KQ and R3 = 1kQ. The power supply is 12 V. ww ww R2 A R3
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- Basic Electrical EngineeringDraw symbols of electrical components. Note: You may use both IEC and NEMA symbols. - Conductors crossing but not connected- Conductors crossing and connected - DC source other than battery- DC generator- AC voltage source- Ideal current source- Ideal Voltage Source- Current Controlled Current Source- Current Controlled Voltage Source- Voltage Controlled Current Source - Voltage Controlled Voltage SourcePlease in typing format please ASAP for the like Please answer the same toI need helpo with this. I need step by step solutions for this and I cant figure it out. Wire to be used in buildings and homes in the United States is standardized according to the AWGsystem (American Wire Gauge). Wires are assigned a gauge number according to their diameter.The scale ranges from gauge 0000 to gauge 36 in 39 steps. The equation for the wire gauge interms of the wire diameter in millimeters is the picture. (a) What is the equation for the diameter in millimeters in terms of the wire gauge N?(b) You have two wires, one that has five times the diameter of the other. By how much do thewire gauges differ for the two wires? (Give your answer to the nearest integer.)
- 2:34 ull 4G I moodle1.du.edu.om An RTD forms one arm of a Wheatstone bridge as shown in the figure. The RTD is used to measure a temperature with the bridge is operated in a balanced mode. The RTD has a resistance of 252 at a temperature of 0°C and a thermal coefficient of resistance a=0.003925C-1. The value of the variable resistance R, must be set to 41.485 Q to balance the bridge circuit. Determine the temperature measured by the RTD where R2=R3=1002 R2 R3 RTD RRTD E, Select one: O a. 4200A 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.Knowing the resistance of the resistors and the EMF of the sources, find the currents in the branches.Proceed comparative analysiswith calculation (equations) and mathematical analysis (Ansys). Create reports with calculations (current on each elements, voltage on each elements), screenshot from Ansys and conclusion. my c variant is 2
- The elements in the circuit shown have the following values: R1 = 1937.97 Q. R2 = 8792.15 Q. Rz R3 = 1441.86 0. It V1 = 8.1 V. 11 = 0.0072 A R. Vo Determine the following: a.) The Thevenin Resistance is, Rth (in ohms): b.) The Thevenin Voltage is, Vth (in volts): c.) The I, output voltage Vo (in volts): Assume R3 to be the load.Needs Complete typed solution with 100 % accuracy.only 9
- E = 20 R1 = 5 R2 = 10 R3 = 40Q2 (a) () What is the difference between a Wheatstone bridge and a Kelvin bridge? Your explanation should include suitable diagrams and applications. (ii) Figure Q2a(ii) shows an AC bridge and the meter indicates zero reading. Find the equation for R, from the real part of the impedance Figure Q2a(1) (i) Given that the value for the resistors R. R. R. are 100 02, 250 £2 and 300 1, respectively. The capacitors C, and Care 1 uF and 0.5 µF, respectively. Calculate the resistor. R5) We usually think of wires as perfect (R=0) conductors, which is not quite accurate. Real wires have resistance, and an effort is made to keep this resistance small- usually less than an ohm. This behavior rarely becomes an issue with low power lab circuits. However, it is a big issue with power distribution systems as you will see in ENGR202. a. Design a uniform cylindrical wire that has a resistance of 25 m2 and uses $1 worth of copper. What are the length and diameter of your wire? Note: You can find the resistivity of copper in your textbook, and you should assume that copper costs $2.69 per pound. b. This wire is cut in half, and the two strands are used to power a toaster from an outlet supplying 1800W at 120V. The toaster can be modeled as a pure resistive load. Draw a simple circuit diagram, including the voltage source, resistors to represent the power cord wires, and the calculated resistance of the toaster. C. How much of the 1800W is absorbed by the power cord itself, not…

