Consider a single-phase load with an applied voltage v ( t ) = 150 cos ( ω t + 10 ° ) volts and load current i ( t ) = 5 cos ( ω t + 50 ° ) A . (a) Determine the power triangle. (b) Find the power factor and specify whether it is lagging or leading. (c) Calculate the reactive power supplied by capacitors in parallel with the load that correct the power factor to 0.9 lagging.
Consider a single-phase load with an applied voltage v ( t ) = 150 cos ( ω t + 10 ° ) volts and load current i ( t ) = 5 cos ( ω t + 50 ° ) A . (a) Determine the power triangle. (b) Find the power factor and specify whether it is lagging or leading. (c) Calculate the reactive power supplied by capacitors in parallel with the load that correct the power factor to 0.9 lagging.
Solution Summary: The author illustrates the power triangle drawn as shown in Figure 1. Value of applied voltage is v(t)=150mathr
Consider a single-phase load with an applied voltage
v
(
t
)
=
150
cos
(
ω
t
+
10
°
)
volts
and load current
i
(
t
)
=
5
cos
(
ω
t
+
50
°
)
A
. (a) Determine the power triangle. (b) Find the power factor and specify whether it is lagging or leading. (c) Calculate the reactive power supplied by capacitors in parallel with the load that correct the power factor to 0.9 lagging.
"I need an expert solution with detailed steps for
integration."
The normalized Far-field pattern of an antenna is given by:
E = √√sine (cosq)
Determine:
1) Beam solid angle
2) Exact Directivity
0≤0≤ 180, while 0≤≤180, and 270 ≤≤ 360
3) HPBW in both azimuth and elevation
"I need an expert solution with detailed steps for
integration."
Find Directivity, the effect aperture and aperture efficiency of the antenna, if it has physical
aperture of 2.4 x 10-2-2 and the radiation intensity can be approximated by:
U(0, 4) = (sesce
0°s0<20°
20°ses600
1.0°≤≤ 360°
Don't use ai to answer I will report you answer
Chapter 2 Solutions
Power System Analysis and Design (MindTap Course List)
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