(c) The temperature of a heater y(t) in degrees celsius satisfies the following differential equation dy (1) + 2y(t) = 4

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(c) The temperature of a heater y(t) in degrees celsius satisfies the following differential equation dy (1) + 2y(t) = 4

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C The Temperature Of A Heater Y T In Degrees Celsius Satisfies The Following Differential Equation Dy 1 2y T 4 1
C The Temperature Of A Heater Y T In Degrees Celsius Satisfies The Following Differential Equation Dy 1 2y T 4 1 (17.81 KiB) Viewed 14 times
(c) The temperature of a heater y(t) in degrees celsius satisfies the following differential equation dy (1) + 2y(t) = 48x(t) dx where x() is the electric input in volts. Convert the continuous system represented by the above differential equation to the corresponding digital system represented by a difference equation for the electric input x[n], output temperature y[n), and the sampling interval T. 14 marks)
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