3 The equation for the instantaneous discharging capacitor is given by Vo is the initial voltage and of the circuit. The tasks are to: a) Draw a graph of voltage against time for voltage across a v=Voe, where is the time constant Vo=12V and T=2s, between t=0s and t=10s. b) Calculate the gradient at t=2s and t=4s. c) Differentiate v= 12e and calculate the value of dv at t=2s and t=4s. dt d) Compare your answers for part b and part c. e) Calculate the second derivative of the instantaneous voltage d²v dt²

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter7: Analytic Trigonometry
Section7.6: The Inverse Trigonometric Functions
Problem 91E
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3 The equation for the instantaneous
discharging capacitor is given by
Vo is the initial voltage and
of the circuit.
The tasks are to:
a) Draw a graph of voltage against time for
voltage across a
v=Voe, where
is the time constant
V₁=12V and T=2s, between t=0s and
t=10s.
b) Calculate the gradient at t=2s and t=4s.
c)
Differentiate
and calculate the value of
v=12e
dv
at t=2s and t=4s.
dt
d) Compare your answers for part b and part c.
e) Calculate the second derivative of the instantaneous
voltage
d²v
dt²
Transcribed Image Text:3 The equation for the instantaneous discharging capacitor is given by Vo is the initial voltage and of the circuit. The tasks are to: a) Draw a graph of voltage against time for voltage across a v=Voe, where is the time constant V₁=12V and T=2s, between t=0s and t=10s. b) Calculate the gradient at t=2s and t=4s. c) Differentiate and calculate the value of v=12e dv at t=2s and t=4s. dt d) Compare your answers for part b and part c. e) Calculate the second derivative of the instantaneous voltage d²v dt²
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