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majuscule    
n. 大字,大写字母
a. 大字的,大写的

大字,大写字母大字的,大写的

majuscule
adj 1: of or relating to a style of writing characterized by
somewhat rounded capital letters; 4th to 8th centuries
[ant: {minuscular}, {minuscule}]
2: uppercase; "capital A"; "great A"; "many medieval manuscripts
are in majuscule script" [synonym: {capital}, {great},
{majuscule}]
n 1: one of the large alphabetic characters used as the first
letter in writing or printing proper names and sometimes
for emphasis; "printers once kept the type for capitals and
for small letters in separate cases; capitals were kept in
the upper half of the type case and so became known as
upper-case letters" [synonym: {capital}, {capital letter},
{uppercase}, {upper-case letter}, {majuscule}] [ant:
{lower-case letter}, {lowercase}, {minuscule}, {small
letter}]



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  • EEL303: PowerEngineering I- Tutorial9 - IIT Delhi
    a bolted (Z f = 0) single line to ground fault occurs on phase A at bus 3 Using the bus impedance matrix for each of the three sequence networks, determine the subtransient current to ground at the fault, the line-to-ground voltages at the faulted bus and at the terminals of machine 2
  • In Class Examples (ICE) - University of Alberta
    tor base (a) Draw the pu zero, positive, and negative sequence networks on a 100 MVA, 13 8 kV base in the zone of the generator (b) Reduce the sequence networks to their Thevenin equivalents, as viewed from Bus 2 Pre-fault voltage is V f = 1 05\ 0 pu Prefault load current and delta-Y transformer phase shift are neglected 24
  • Power System Analysis and Design - Numerade
    The inductor connected to generator 3 neutral has a reactance of 0 05 per unit using generator 3 ratings as a base Draw the zero-, positive-, and negative-sequence reactance diagrams using a $1000-\mathrm{MVA}, 765-\mathrm{kV}$ base in the zone of line $1-2$ Neglect the $\Delta-\mathrm{Y}$ transformer phase shifts figure cant copy
  • POWER SYSTEMS-III (R20- R20A0209) LECTURE NOTES B. TECH (III . . . - MRCET
    complex power (MVA) and line voltage (KV) The chosen base MVA is the same for all the parts of the system However, the base voltage is chosen with reference to a particular section of the system and the other base voltages (with reference to the other sections of the systems, these sections caused by the presence of the
  • P1-9. 1 The single-line diagram of a three-phase power system is . . . - Filo
    The final answer is a set of three sequence reactance diagrams (positive, negative, and zero sequence) for the zone of line 1–2, where: All equipment (generators, transformers, transmission lines, and the neutral inductor) have been converted to a common base of 1000 MVA and 765 kV using the conversion formula
  • The single-line diagram of a three-phase power system is shown in . . .
    The inductor connected to Generator 3 neutral has a reactance of 0 05 per unit using generator 3 ratings as a base Draw the zero-, positive-, and negative-sequence reactance diagrams using a 1000-MVA, 765-kV base in the zone of line 1-2 Neglect the Δ − Y \mathrm{\Delta }-\mathrm{Y} Δ − Y transformer phase shifts Problem 9 1 Figure 9 17
  • A. ) The single-line diagram of a three-phase power system is shown in . . .
    3 ratings as a base a) Determine the equivalent positive-, negative-, and zero-sequence impedance at bus 2 and at terminals of G1 and G3, using a 1000-MVA, 765-kV base in the zone of line 1-2 b) Calculate the DLG fault occurs at bus 3 with pre-fault voltage of 785 kV Neglect the ∆-Y transformer phase shifts (Refer to Photo below) B ) In
  • UNSYMMETRICAL FAULTS - Baylor University
    unit on the motor base (a) Draw the per-unit zero-, positive-, and negative-sequence networks on a 100-MVA, 13 8-kV base in the zone of the generator (b) Reduce the sequence networks to their The´venin equivalents, as viewed from bus 2 Prefault voltage is V F ¼ 1:05 0 per unit Prefault load current and D–Y transformer phase shift are
  • SOLVED: A single-line diagram of the power system considered . . . - Numerade
    The motor neutral is grounded through reactance Xn per unit on the motor base (25 points) Draw the per-unit zero, positive, and negative sequence networks on 100-MVA, 13 8-kV base in the zone of the generator (b) Reduce the sequence networks to their Thevenin equivalents, as viewed from bus 2 Prefault voltage is V = 1 0540 per unit
  • The single-line diagram of a three-phase power system is shown in . . .
    In the given scenario, we have a single-line diagram of a three-phase power system, and we need to draw the zero-, positive-, and negative-sequence reactance diagrams using a 1000-MVA, 765-kV base in the zone of line 1-2 The reactance values for the inductor connected to Generator 3 neutral are provided as 0 05 per unit using Generator 3





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