a.) Find a phasor expression in polar form for g1(t) ↔ ̃G1. Express the angle in degrees. (use a calculator to evaluate any trigonometric ex- pressions) b.) Find a phasor expression in polar form for g2(t) ↔ ̃G2. Express the angle in degrees. (use a calculator to evaluate any trigonometric ex- pressions) c.) Find a phasor expression in polar form for g3(t) ↔ ̃G3. Express the angle in degrees. (use a calculator to evaluate any trigonometric ex- pressions)

Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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a.) Find a phasor expression in polar form for
g1(t) ↔ ̃G1. Express the angle in degrees. (use
a calculator to evaluate any trigonometric ex-
pressions)
b.) Find a phasor expression in polar form for
g2(t) ↔ ̃G2. Express the angle in degrees. (use
a calculator to evaluate any trigonometric ex-
pressions)
c.) Find a phasor expression in polar form for
g3(t) ↔ ̃G3. Express the angle in degrees. (use
a calculator to evaluate any trigonometric ex-
pressions)

BC:1.4 For the expression
g(t) = 9₁ (t) + 92 (t) + g3(t) = A cos (2π ft +0A)
where
9₁ (t) = 3 sin(2π ft – 141⁰)
92 (t) = 23 cos (2Tπft +31°)
93 (t) = 17 cos (2π ft + 180°)
and f 2500 Hz,
=
Transcribed Image Text:BC:1.4 For the expression g(t) = 9₁ (t) + 92 (t) + g3(t) = A cos (2π ft +0A) where 9₁ (t) = 3 sin(2π ft – 141⁰) 92 (t) = 23 cos (2Tπft +31°) 93 (t) = 17 cos (2π ft + 180°) and f 2500 Hz, =
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