15. (3 pts. ) The diagram below represents the variation of the voltage on a capacitor. The current flowing through the capacitor is proportional to the derivative of the voltage on it. Determine and plot as a function of time the derivative of the voltage function illustrated: v(t) 80V t [s] 4 8 10
15. (3 pts. ) The diagram below represents the variation of the voltage on a capacitor. The current flowing through the capacitor is proportional to the derivative of the voltage on it. Determine and plot as a function of time the derivative of the voltage function illustrated: v(t) 80V t [s] 4 8 10
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![15. (3 pts. ) The diagram below represents the variation of the voltage on a capacitor. The current
flowing through the capacitor is proportional to the derivative of the voltage on it. Determine
and plot as a function of time the derivative of the voltage function illustrated:
v(t)
80V
t [s]
4
8
10](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F73d6ccf0-88ed-479e-ad8b-6009b5d98f98%2Fb137a3b0-2612-41e1-97ba-b84bcef07b83%2For5rmrc_processed.jpeg&w=3840&q=75)
Transcribed Image Text:15. (3 pts. ) The diagram below represents the variation of the voltage on a capacitor. The current
flowing through the capacitor is proportional to the derivative of the voltage on it. Determine
and plot as a function of time the derivative of the voltage function illustrated:
v(t)
80V
t [s]
4
8
10
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