Solve by using Thevenin's Theorem.
R1 = 47 Kê
R2 = 4.7 Kê
R3 = 6.8 Kê
R4 = 1 Kê
HFE = 150
VCC = 18V
IC = 1 mA
VC = 11.2 V
Mathematics
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Evaluate the integral.
A. tan2(ex) + ln(cos(ex)) + C
B. tan2(ex) + ln(cos(ex)) + C
C. tan2(ex) - ln(cos(ex)) + C
D. tan2(ex) - ln(cos(ex)) + C
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Use a special product formula to simplify.2
A. 2c + c +
B. c2 + c +
C. c2 +
D. c2 +
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Find a vector function that represents the curve of intersection of the two surfaces: the top half of the ellipsoid x²+5y²+5z²= 25 and the parabolic cylinder y=x².
What will be an ideal response?
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An equation that defines y as a function of x is given. Rewrite the equation using function notation f(x).9x - 5y = 7
A. f(x) = 9x - 7
B. f(x) = x +
C. f(x) = x -
D. f(x) = x +
Mathematics