For an electrical component, the formulas for charge and voltage are given below. A is 9 coulombs, B is 12 seconds, C is 3 volts, and D is 24 seconds. Give the total energy of this component from 0 to 4 sec. You must round your answer to the nearest integer and give your answer as an integer followed by the appropriate letter that represents the units of energy.

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For an electrical component, the formulas for charge and voltage are given below.

A is 9 coulombs, B is 12 seconds, C is 3 volts, and D is 24 seconds.

Give the total energy of this component from 0 to 4 sec. You must round your answer to the nearest integer and give your answer as an integer followed by the appropriate letter that represents the units of energy.

The image contains two mathematical expressions written on a grid background:

1. \( q(t) = A e^{-\frac{t}{B}} \)

2. \( v(t) = C e^{-\frac{t}{D}} \)

These equations likely represent exponential decay functions that might be used in physics or engineering contexts to describe how certain quantities change over time. The parameters \( A \) and \( C \) are initial values, while \( B \) and \( D \) are time constants that affect the rate of decay. \( t \) denotes time. There are no graphs or diagrams included in the image.
Transcribed Image Text:The image contains two mathematical expressions written on a grid background: 1. \( q(t) = A e^{-\frac{t}{B}} \) 2. \( v(t) = C e^{-\frac{t}{D}} \) These equations likely represent exponential decay functions that might be used in physics or engineering contexts to describe how certain quantities change over time. The parameters \( A \) and \( C \) are initial values, while \( B \) and \( D \) are time constants that affect the rate of decay. \( t \) denotes time. There are no graphs or diagrams included in the image.
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