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- Answer the question plus this additional part: In addition use this to find the numerical value of the capacitance per unit length of two long parallel wires, each with radius 1 mm, with their centers separated by 4 mm. Express your answer in picofarads per meter. You may assume the wires are perfect conductors. Question 2.52 is attached for reference:1... Why do we use round-shaped coils (I.e., Round shaped turns in the coils) in both the primary and secondary circuits [If those coils were not round-shaped, what would be the problem]? Must show the draw figures 2.... Write down major differences between conducting and displacement current densities with proper figures.A 0.1-W small cylindrical resistor mounted ona lower part of a vertical circuit board is 0.3 in long andhas a diameter of 0.2 in. The view of the resistor is largelyblocked by another circuit board facing it, and the heat transferthrough the connecting wires is negligible. The air is free to flow through the large parallel flow passages between theboards as a result of natural convection currents. If the airtemperature at the vicinity of the resistor is 120°F, determinethe approximate surface temperature of the resistor. Evaluateair properties at a film temperature of 170°F and 1 atm pressure.Is this a good assumption?
- Consider a pair of solenoids with the following specifications. N1=800, l1=10cm, r1=1cm N2=600, l1=8cm, r2=1.5cm Calculate the mutual inductance in this case.task 2 A. The average surface temperature on Mars is -63 °C, so temperature control is used to drive a heatingelement, or a heater, inside the Martian home. You decided to use an electric heater placed in the middle of the home as your heat source. To measure the temperature, you decided to put athermocouple above the door entrance:1. In order to guarantee that the Martian people will live, you decided to make a closed-loopcontrol system. Based on the exact scenario given, clarify the following:a. Which part resembles the feedback path.b. What is the set value.c. What are the controlling and the controlled variables.d. When you build the Martian dome for the first time, the temperature is -63 C, calculate the absolute error.e. If your thermo-couple measures the values from is -200 to 1500,calculate the error as a percentage. 2. Consider the case when an astronaut comes from the Martian surface into the home.Temperature is expected to drop due to the exposure to the Martian cold wind.…Please answer ASAP A concentric cable has a core diameter of 10 mm. The inductance of the cable is 4 × 10−7 H/m. Ignoring inductance due to internal linkages, determine the diameter of the sheath. Assume that the relative permeability is 1.
- High Voltage Technique For an open air test in a high voltage laboratory, a voltage of 500 kV will be taken out through a 4m x 6m door. Considering that this work will be done with a coaxial cylindrical electrode system, calculate the inner cylinder radius according to the case that the electric field strength on the inner cylinder surface is 10 kV/cm.7. What can you conclude about the sum of potential differences in a circuit loop? 8. What is the current in the loop? ____A?A concentric cable has a core diameter of 10 mm. The inductance of the cable is 4 × 10−7 H/m. Ignoring inductance due to internal linkages, determine the diameter of the sheath. Assume that the relative permeability is 1.
- A four pole lap one armature running at 1500 RPM delivers a current of 150 amperes and has a 64 commuter segments. The brush spans 1.2 segments and inductance of each armature coil is 0.05 mH. Calculate the value of reactance voltage assuming (i) linear communication (ii) sinusoidal commutation. Neglect Mica thickness. (Our subject is ELECTRICAL MACHINE 1)A coil of radius r = 0.50 cm and 20 turns sits inside the center of a long, tightly wound solenoid of radius a = 1.0 cm, 5000 turns and length 10.0 cm. Looking down the axis of the solenoid, there is a clockwise current of strength 1.0 A and it is increasing at the rate of 0.50 A/s. The coil is oriented parallel to the individual loops of the solenoid (so that its cross section is also circular when looking own the solenoid axis).a. Find the magnitude of the induced emf in the coil and the direction of the induced current.b. Find the induced electric field outside of the solenoid, 1.5 cm away from the axis of the solenoid.(Ignore the coil inside the solenoid).FUNDAMENTALS OF DEFORMABLE BODIESThe tank shown in figure is fabricated from 10 mm steel plate. Determine the maximum longitudinal and circumferential stresses caused by an internal pressure of 1.2 MPa. Given: t = P = Required: Maximum Longitudinal Stress (σL) Maximum Circumferential Stress (σT)