For ideal transformer n=2; Calculate I1, 12, V1, V2. 10/0° V 202 ΖΩ ww 1:2 Ideal ξίζΩ
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- Consider an ideal transformer with N1=3000andN2=1000 turns. Let winding 1 be connected to a source whose voltage is e1(t)=100(1| t |)volts for 1t1ande1(t)=0 for | t |1 second. A2- farad capacitor is connected across winding 2. Sketch e1(t),e2(t),i1(t),andi2(t) versus time t.Given Zo-j407 2, R₁143, R6317 52 and a 0.04, what is the magnitude of the source voltage Vs (in V rms) in the primary of the ideal transformer? Vs R₁ ww Answer: Zc Zc R₁ Use up to 2 digits after the decimal point if necessary in your answer below VL-28020 V TRThe equivalent resistance of the primary of a transformer having K = 6 and R1 = 0.2 ohm when referred to secondary becomes.......ohm. Group of answer choices 0.004 7.2 0.72 0.0055
- Assume 120Vrms is applied to the transformer primary (from P1 to P2). What is the expected secondary voltage measured from S1 to S2? 4:1 Np = 320 Ns = 80 S2 P20 80 Vrms 15 Vrms 30 Vrms 60 VrmsProblem 5 Consider a three winding transformer with the following particulars: = Z₁ Z2 Z3 =0.02 + j0.08 £, V₂ = 400 V, 12 = 60/30° A, and I3 = 50/-40° A. Assume that V₂ is the reference phasor, calculate: The intermediate voltage Vo. a. b. The primary current I₁ and the primary voltage V₁. c. The tertiary voltage V3 referred to the primary side. d. The apparent powers and the power factors at the primary, secondary and tertiary terminals. e. The transformer efficiency.Q/A single-phase transformer with a capacity of 100 kVA and a voltage of 2000/400 and the equivalent circuit elements are as follows R1=0.10 x1=0.20 R2= 0.250 X2 = 0.75 RO = 500 XO = 150 It feeds a 90 kVA load at a voltage of 2000 volts and a power factor of 8.0 delayed. Calculate the initial voltage and current? Rogl JXql a Mmm T I', 2₁ Acti Go to
- Assignment 2 A 60-Hz 20-kVA 2400/240-V-rms transformer has the following equivalent-circuit parameters: Primary resistance Secondary resistance Primary leakage reactance (X1) Secondary leakage reactance (X2) X2=»L2 Magnetizing reactance Core-loss resistance R1 R2 0.03Ω XI=»L1 6.52 0.072 Xm=oLm 15k2 Rc 100k2 Find the percentage regulation and power efficiency for the transformer for a rated load having a lagging power factor of 0.8. (Use the approximate equivalent circuit)A single-phase transformer has 480 turns on the primary and 90 turns on the secondary. The mean length of the flux path in the core is 1.8 m and the joints are equivalent to an airgap of 0.1 mm. The value of the magnetic field strength for 1.1 T in the core is 400 A/m, the corresponding core loss is 1.7 W/kg at 50 Hz and the density of the core is 7800 kg/m3. If the maximum value of the flux density is to be 1.1 T when a p.d. of 2200 V at 50 Hz is applied to the primary, calculate: a. the cross-sectional area of the core; b. the secondary voltage on no load; c. the primary current and power factor on no loadVin V₁ *V₂ R₂ Vout 1:5 Assume the transformer circuit above is ideal, and that R₁ = 1000, R₂ = 4000 and 11,rms = 50 A.
- SOLVE STEP BY STEP IN DIGITAL FORMAT XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX 2. A transformer with a 10/1 turns ratio has a maximum flux density of 60,000 lines/in2, when the primary winding is connected to a 2300 V power supply at 60 cps. What will be the maximum flux density if the secondary is connected to a 115 volt supply at 25 cps with the primary open?11) Which phenomenon is used in transformer to change the values of alternating voltages and currents? a. Lenz's law b. Ferromagnetic core c. Faraday's Law d. Mutual inductionFind out the equivalent inductance for the combination when 2 inductances L1 and L2 are connected in parallel such that their fluxes oppose each other Determine the efficiency of the transformer and find out the value of load at which efficiency will be maximum 3