Q3 A)List the types of attraction and induction electomagnetic relays and draw schematic diagram for each type.
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A: Part b: Show that the total power supplied equals the total power dissipated in the resistors.…
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Q: Q1 A silicon sample doped with 10'* donor atoms/cm^2. Find at 300K: 1. The equilibrium hole…
A: Given:ND=10¹⁷ donar atoms/cm3ni=1.5×10¹⁰ per cm³T=300 KkT = 26 mV
Q: 1. Solve for the Total Resistance. R2 w 102 Rt R3 R1 w 152 w R5 w 902 82 R4 ш 402 R6 w 802 R7 ш 162
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Q: Provide an implicit general solution and an explicit particular solution for the following equation…
A: Implicit General Solution: 1/y=−3x2+Cxplicit Particular Solution: y = 1/(−3x2+28) with the initial…
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Q: Using a phasor diagram, determine V when V=V1+V2+V3 and V1=3+j3, V2=4+j2 and V3=-3-j2
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Q: A very common form of latch circuit is the simple "start-stop" relay circuit used for motor…
A: Step 1:The start stop relay circuit is used to turn a motor on or off and start or stop a machine or…
Q: Q2: Lis the following: 1- General purpose registers (8 bits). 2- Index and pointer registers. 3-…
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A: 1.The voltage drop across all of the inductors in parallel will be the same. Then, Inductors in…
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Q: Q1: A- Consider a system uses two references 1,2,3,2,4,3,2,4, 2, 5 and 3, 2, 4, 2, 5, 1, 2, 3, 2, 4,…
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Q: Question Bulding with Full adder using Magnitude Comparator
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Q: 2. For the current-divider circuit shown below, a. Use the node-voltage method to find V1, V2, and…
A: Step 1: Calculate the equivalent resistance and simplify loop 1.Step 2: Mark the nodes and the…
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A: Explanations:The State Table: it shows the next state and output of a sequential circuit for each…
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Q: 4.2. A thermometer having a time constant of 1 min is initially at 50°C. It is immersed in a bath…
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A: To provide a proof showing that Leq1=L11+L21+L31 for three inductors connected in parallel…
Q: Given the x(t) signal get: displacement, elongation or compression of the signal
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A: Step 1: A voltage source of 10∠0° V rmsThree resistors: 1Ω, 1Ω, and 2ΩTwo inductors: j4Ω and j2Ω…
Q: 120 marks Q3: Draw the resulting output signal for all the shown circuits with given inputs b) A 10%…
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Q: B. A step up chopper has a supply voltage of 250V while the output voltage is 500V. (a) Derive an…
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Q: 2. Solve for the following values: R1 R2 R5 R7 R4 23 102 R3 R6 5 Ω 252 3 20 E1 I1 120 VOLT Rt E2 12…
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Q: 1. For the current-divider circuit shown below calculate, a. io and Vo. b. The power dissipated in…
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Q: please do (1) and (2) in matlab
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Q: Q5/A: A power plant has three generators (G1, G2, and G3) supplying the plant bus, the fuel costs…
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A: Given: I = 12 AR11 = 20 ΩR12 = 20 ΩR21 = 30 ΩR22 = 30 ΩR31 = 60 ΩR32 = 60 Ω Here R11 and R12 are…
Q: Q2: For the pole-zero diagram shown in Figure Q1. Assuming the lengths of poles and zeros from the…
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![Q3
A)List the types of attraction and induction electomagnetic relays and draw schematic
diagram for each type.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F8b2d0480-f256-4cfa-b2be-befd6553e546%2Fe1b54408-bbc0-4686-8443-7cb422eaeb05%2Fcdho11_processed.jpeg&w=3840&q=75)
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- Q2/ Design a 4-pole wave winding for an armature with 21 slots. Assume single turn coils and two conductors per slot. (35 mark)What are the effects of zero sequence current on the excitation field windings?38. A) Armature reaction in a DC generator can be compensated for by inserting__________ between the main field poles. a) interpoles b) commutating poles c) either "a" or "b" d) neither "a" nor "b" B) Intel-poles 11........a) have few turns of large wire b) are connected in series with the armature c) connections are often made internally d) all of the above C) An interpole is a small pole placed between the main poles of a DC generator and connected so as to have the same polarity as the following main pole in the direction of rotation. a) true b) false D) Compensating windings_______________ interpoles. a) serve the same function as b) do exactly the opposite of c) either "a" or "b" d) none of the above
- A 6-pole lap-connected DC generator has 480 conductors and armature circuit resistance is 0.06 ohm. If the conductors are reconnected to form wave winding, other things remaining unchanged, the value of armature circuit resistance will beCalculate the reactance voltage for a machine which runs at 900rpm number of commutator segments is 65, brush width is 1.74 (in commutator segments), coefficient of self induction is 153 the conductor current is 27A.A 4-poled.c.shuntgenerator with a wave- wound armature has to supply a load of 500 lampseach of 100W at 250V.Allowing 10V for the voltage drop in the connecting leads between the generator and the loadand drop of 1V per brush, Calculate the speed at which the generator should bedriven.The magnetic flux per pole is 30 mWband the armature and shunt field resistance are respectively 0.05Nand 652.The number of armature conductors is 390.
- i need the answer quicklyIn 2-pole machines: the wave winding have greater generated voltage than *.the lap winding armatures True False *.For high rotating speed machines the number of poles must be Little True False The reactance voltage is added in the coil undergoing commutation to * reduce the spark True FalseDetermine the commutator pitches Yc, trace the winding around the commutator and show that the proper segment, ahead of or behind the first one, is reached for the following wave-wound armatures: a) 75 segments, four poles b) 93 segments, four poles c) 229 segments, six poles d) 227 segments, eight poles
- Explain the concept of motherboard power phases and their impact on system stability and overclocking.4. A 6 pole wave wound shunt generator delivers 200A at a terminal voltage of 240V. Ra and Rsh are 0.03Ω and 70Ω respectively. Neglecting brush drop, determine (i) armature current (ii) current per parallel path (iii) generated voltage and (iv) Power developed. armature current ? current per parallel path ? generated voltage ? Power developed ?The preferred method for applying the field excitation voltage uses a field relay which operates on the principle of A. speed application. B. time application.C. angle application. D. thermal application.
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