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ContentTime Constant of RC Circuit
Time Constant of RC CircuitImmediately after the RC circuit is connected to battery,π=0; ππππ=πΌπ
After the capacitor is fully charged,
π=πΆππππ; πΌ=0
Current in RC CircuitThe current in RC Circuit is a function of time. Current is defined as Charge βπ passed by per unit time βπ‘πΌ=|π|ππ΄π£βπΌ=
Since current πΌ is the same everywhere in the RC circuit, charge βπ passed by per unit time βπ‘ throughout the circuit piles up at the capacitor πΆ. The voltage ππΆ across the capacitor is ππΆand voltage ππ across the resistor is πΌπ . Apply voltage loop ππππ=ππΆ+ππ
=
Assume π(π‘) has the form π΄πβπ‘/π
πΆ+constant,
π(π‘)=π΄πβπ‘/π
πΆ+constantβ
Apply boundary conditions, At π‘=0, π=0
π(π‘β0)=π΄πβ0/π
πΆ+πππππΆ=π΄+πππππΆ=0βπ΄=βπππππΆ
Therefore
π(π‘)=(βπππππΆ)πβπ‘/π
πΆ+πππππΆ=πππππΆ
π
πΆ is the time constant of a RC circuit. When time π‘=π
πΆ, the current πΌ drops by a factor of π.
I(π‘)=
By Talor Expansion
πβπ‘/π
πΆ=1β
When time π‘ and π
πΆ are equal, the coefficients of Taylor Expansion equal to 1. In other words, at the time constant π
πΆ the current is always reduced to 0.37 of the original current.
Source and Referencehttps://www.youtube.com/watch?v=dPGTENyJO9k&list=PLZ6kagz8q0bvxaUKCe2RRvU_h7wtNNxxi&index=17Β©sideway ID: 200100102 Last Updated: 1/1/2020 Revision: 0 Latest Updated Links
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