c2 (). Draw the Schematic diagram and explain the working of LVDT and write any two applications of it. 2 : (ii) A 16 kVA, 56HZ, single-phase transformer has a turns ratio of 16:2 and is supplied from a 3 kV supply. Neglecting losses, determine (a) the secondary voltage. (b) the full load primary current, (c) the maximum flux and (d) the minimum value of loa resistance which can be connected across the secondary winding without the kVA rating being exceeded. 4 a: xan secondary voltage primary current maximum flux secondary resistance

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter3: Power Transformers
Section: Chapter Questions
Problem 3.47P: Consider the oneline diagram shown in Figure 3.40. The three-phase transformer bank is made up of...
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C2 (1). Draw the Schematic diagram and explain the working of LVDT and write any two applications of it.
(ii) A 16 KVA 56HZ, single-phase transformer has a turns ratio of 16:2 and is supplied from a 3 kV supply. Neglecting losses,
determine (a) the secondary voltage. (b) the full load primary current (c) the maximum flux and (d) the minimum value of loai
resistance which can be connected across the secondary winding without the kVA rating being exceeded.
xam
secondary voltage
primary current
maximum flux
secondary resistance
Transcribed Image Text:C2 (1). Draw the Schematic diagram and explain the working of LVDT and write any two applications of it. (ii) A 16 KVA 56HZ, single-phase transformer has a turns ratio of 16:2 and is supplied from a 3 kV supply. Neglecting losses, determine (a) the secondary voltage. (b) the full load primary current (c) the maximum flux and (d) the minimum value of loai resistance which can be connected across the secondary winding without the kVA rating being exceeded. xam secondary voltage primary current maximum flux secondary resistance
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