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1.When a line-to-ground fault occurs, the current in a faulted phase is 100A. The current in other two phases will be zero 33.3A 66.6A 100A Ans:a 2.In which fault zero sequence network is not connected line to ground line to line ground to neutral double line to ground Ans:b 3.Symmetrical Fault analysis includes three Phase Fault L-G fault LL-Fault LLG-Fault Ans:a 4.Operator ‘a’ gives Phase difference 120º Phase difference 240º Phase difference 360º none Ans:a 5.Zero Sequence Impedance for transmission line is __________ than positive and Negative sequence Impedance greater lesser equal none Ans:a 6.UnSymmetrical Fault analysis not includes three Phase Fault L-G fault LL-Fault LLG-Fault Ans:a 7.For a large power system network short circuit study involves Voltage Z bus Y bus current Ans:b 8.Positive sequence component has equal magnitude opposite magnitude opposite phase sequence none Ans:a 9.Which sequence contains active sources Positive Negative Zero zero and positive Ans:a 10.The zero sequence reactance of lines is about 5 times 2 to 3 times >5 times 1 to 2 times Ans:b ::The voltage source is un available in { ~positive sequence =negative sequence ~zero &positive ~Reactance diagram } ::Digital fault studies are carried out using { =Zbus ~Ybus ~reactance bus ~all of thes } ::The number of elements added at one time in formulating Zbus is { ~0 =1 ~2 ~3 } ::Which sequence contains active sources { ~0 ~negative ~symmetrical =positive } ::Major Cause of symmetrical fault includes { ~Wind and ice loading on the lines =Insulation failure of the system ~Overloading of underground cables ~all of these } ::The main assumption to be considered for Short circuit analysis { ~post fault current is zero =pre fault current is zero ~pre fault current is high ~post fault current is high } ::Determination of SCC involves { =Thevenins impedance ~Nortons impedance ~series impedance ~parallel impedance } ::Transient reactance involves { ~the reactance value before fault =the reactance value during fault ~the reactance value after clearing fault ~none of these } ::steady state reactance involves { ~the reactance value before fault ~the reactance value during fault =the reactance value after clearing fault ~none of these } ::Sub Transient reactance involves { ~the reactance value before fault =the reactance value immediately after the occurence of fault ~the reactance value after clearing fault ~none of these } ::For a large system Computation of short circuuit studies is done using { =Zbus ~Ybus ~reactance bus ~all of these } ::Unsymmetrical fault analysis can be made possible by { ~positve sequence ~Negative sequence ~zero sequence =symmetrical component transformation } ::Positive sequence component involves________________compared to original phasor { ~equal magnitude and opposite phase sequence =equal magnitude and equal phase sequence ~equal magnitude and no phase sequence ~zero magnitude and no phase sequence } ::Negative sequence component involves________________compared to original phasor { =equal magnitude and opposite phase sequence ~equal magnitude and equal phase sequence ~equal magnitude and no phase sequence ~zero magnitude and no phase sequence } ::Zero sequence component involves________________compared to original phasor { ~equal magnitude and opposite phase sequence ~equal magnitude and equal phase sequence =equal magnitude and no phase sequence ~zero magnitude and no phase sequence } ::An'a'operator has { =magnitude 1 and angle 120 ~magnitude 1 and angle 240 ~magnitude 1 and angle 360 ~magnitude 0 and angle 120 } ::'a2' has { ~magnitude 1 and angle 120 =magnitude 1 and angle 240 ~magnitude 1 and angle 360 ~magnitude 0 and angle 120 } ::'a3' has magnitude { ~ 1 and angle 120 =1 ~magnitude 1 and angle 240 ~magnitude 0 and angle 120 } :: The property with 'a' operator is { ~1+a=0 ~1+a2=0 =1+a+a2=0 ~1+a3=0 } ::The phase sequence voltage is given by sum of { ~ + and _ ve sequence voltage ~ zero and _ ve sequence voltage = +, zero and _ ve sequence voltage ~ + and zero sequence voltage } ::Relation between phase sequence and sequence component voltages is { ~ V012=A Vabc =V012=Inverse A * Vabc ~Vabc=Inverse A * V012 ~none of these } ::Complex power interms of symmetricalcomponents { ~sum of powers of phasesequence ~sum of powers of symmetrical component refers to single phase =3*sum of powers of symmetrical component refers to single phase ~3*sum of powers of phasesequence } ::Positive Seqence Network of transformer depends on { ~the Connection on primary and secondary ~the source voltage and reactance =recatance alone ~none of these } ::Negative Seqence Network of transformer depends on { ~the Connection on primary and secondary ~the source voltage and reactance =recatance alone ~none of these } ::zero Seqence Network of transformer depends on { =the Connection on primary and secondary ~the source voltage and reactance ~recatance alone ~none of these } ::Positive Seqence Network of synchronous machine depends on { ~the Connection on primary and secondary =the source voltage and reactance ~recatance alone ~none of these } ::Negative Seqence Network of synchronous machine depends on { ~the Connection on primary and secondary ~the source voltage and reactance =recatance alone ~none of these } ::zero Seqence Network of synchronous machine depends on { ~the Connection on primary and secondary ~the source voltage and reactance =recatance alone ~none of these } ::Sequence network for LG fault is given by { ~parallel connection of +, zero and _ ve sequence network =series connection of +, zero and _ ve sequence network ~parallel connection of + and _ ve sequence network ~none of these } ::Sequence network for LLG fault is given by { =parallel connection of +, zero and _ ve sequence network ~series connection of +, zero and _ ve sequence network ~parallel connection of + and _ ve sequence network ~none of these }