Example23/ Two transformers are designed to match a line having a Z, = %3D 3002, ZR = 752 find Stable impedance at the section. %3D
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Q: need to convert the drawing from a handwritten drawing to a typeface on the computer, please
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Q: Example25/ T-L with Zo=600 0,ZR = 100 Q. Find the length and location of the %3D single stub…
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Q: 4. A single phase load draws a current of 30 / 35 deg A. The voltage across the load is 220/ 75 deg…
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Q: Example25/ T-L with Zo=600 0,ZR = 100 N. Find the length and location of the single stub terminated…
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Q: 3b) Calculate v, in the circuit shown. 1H 22 12 cos 4 V 4 H 2H ww ell
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Q: = 600 and , Q1: The currents of 3-phase system are Ia = 3500, 11 250 Compute the un-symmetrical…
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Q: sketch the standing wave Pattern for Ed, and Id,
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Q: Example24/ A transformer is designed to match a line having Z, = 4002 ,ZR 1002 , A 3m If the…
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Q: Example25/ T-L with Zo=600 Q ,ZR = 100N. Find the length and location of the single stub terminated…
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Q: -5. Design a logic circuit whose output is HIGH only when a majority inputs A, B, and C are LOW.
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- 3-phase 132 kV, 100 km, 50 Hz, single circuit line has horizontal spacing with 3.5 m betweenadjacent conductors. The conductor diameter is 1.2 cm. Find the line capacitance per phase and__charging current per phase.[0.8415 uF, 20.15 A]A parallel conductor transmission line #6 with a distance of 30.48 cm (12 in.)Made of AWG copper wire (diameter =4.11mm (0.162 inch), x= 58 MS/m). ConductorsAssume that there is air between Neglecting the internal inductance; L, C. G's per metertheir values; Find the dc resistance and the ac resistance at 1 MHzA 3-phase 50 km long single circuit 66 kV transposed overhead line has horizontal spacing with3 m between adjacent-conductors and 6 m between outer conductors. The conductor diameter is2 cm. Find the Inductance per phase. [61.85 mh]
- A single core concentric cable is to be manufactured for a 161kV, 50Hz transmission system. The maximum permissible safe stress is to be 16,000,000V/m (rms) and the relative permittivity, 4. Calculate the following:i) the radius of the conductor ii) the radius of the sheath iii) the capacitance of the cableIn a string of three identical suspension insulator units supporting transmission line conductor.if the self capacitance of each unit is debited as C farads, The capacitance of each connector pin to ground can be taken as 0.1C farad's. If the maximum permissible voltage per unit is given as 20 kva then calculate A.maximum safe working voltage B.string efficiencyRMS VALUE OF MAXIMUM AND MINIMUM STRESSES IN INSULATION OF SINGLE CORE CABLE Emax=50kV/cm AND Emin=15kV/cm. CONDUCTOR DIAMETER IS 1.8cm, CALCULATE THE POTENTIAL OF THE CABLE.
- If the values of real power and reactive power is specified for a bus, then it is called as PV bus. Select one: True FalseA 200 km, 3-phase transmission line has its conductors placed at the corners of an equilateral triangle of 2·5 m side. The radius of each conductor is 1 cm. Calculate :(i) line to neutral capacitance of the line,(ii) charging current per phase if the line is maintained at 66 kV, 50 Hz. [(i) 2·02 μF (ii) 24·2 A]An overhead line has the following data: Span length 160 metres, conductor diameter 0.95 cm, weight per unit length of the conductor 0.65 kg/metre. Ultimate stress 4250 kg/cm², wind pressure 40 kg/m² of projected area. Factor of safety 5.
- The simultaneous equations representing the currents flowing in an unbalanced, three-phase, star connected, electrical network are as follows: 2.4I1 + 3.6I2 + 4.8I3 = 1.2 −3.9I1 + 1.3I2 − 6.5I3 = 2.6 1.7I1 + 11.9I2 + 8.5I3 = 0 Using Gaussian elimination, solve the equations for the currents.Determine the dielectric stress per cm which can be applied on a single core cable working at 132 KV, 3-phase system, if the value of internal diameter of sheath which investigates the most economical size of conductor is 8.2 cm. please i need it know pleasrThe three conductors A, B and C of a 3-φ line are arranged in a horizontal plane with DAB = 2 m and DBC = 2·5 m. Find line-to-neutral capacitance per km if diameter of each conductor is 1·24 cm. The conductorsare transposed at regular intervals.