Suppose that the current, i, through a resistor is described by the function i(t) = (60 – t)? + (60 – t) sinvt and the resistance, R, is a function of the current, R(i) = 10 i +2 i2/3 Compute the average voltage, V, overt = 0 to 60 using the multiple-segment Simpson's 1/3 rule, with number of segment , n, = 6. Where, St, v dt v dt S, dt 60 to and V = iR

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Suppose that the current, i, through a resistor is described by the function
i(t) = (60 – t)? + (60 – t) sinvi
and the resistance, R, is a function of the current,
R(i) = 10 i + 2 i?/3
Compute the average voltage, V, over t = 0 to 60 using the multiple-segment
Simpson's 1/3 rule, with number of segment , n, = 6.
Where,
-60
S. V dt °v dt
60
S, dt
to
and
V = iR
Transcribed Image Text:Suppose that the current, i, through a resistor is described by the function i(t) = (60 – t)? + (60 – t) sinvi and the resistance, R, is a function of the current, R(i) = 10 i + 2 i?/3 Compute the average voltage, V, over t = 0 to 60 using the multiple-segment Simpson's 1/3 rule, with number of segment , n, = 6. Where, -60 S. V dt °v dt 60 S, dt to and V = iR
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