Q 3. shows an energy source (battery) including its internal resistance r completed with an external The circuit in the diagram r load R. Find | a' a) an expression for the power delivered to the load resistance R. R b) a condition under which the power deliv- ered to the load R is maximal. a c) The power if the load resistance is • R= 0 • R→ ∞ Note that you will find a maximum in a function by setting its first derivative zero.
Q 3. shows an energy source (battery) including its internal resistance r completed with an external The circuit in the diagram r load R. Find | a' a) an expression for the power delivered to the load resistance R. R b) a condition under which the power deliv- ered to the load R is maximal. a c) The power if the load resistance is • R= 0 • R→ ∞ Note that you will find a maximum in a function by setting its first derivative zero.
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![Q 3.
shows an energy source (battery) including its
internal resistance r completed with an external
The circuit in the diagram
r
load R. Find
| a'
a) an expression for the power delivered to
the load resistance R.
R
b) a condition under which the power deliv-
ered to the load R is maximal.
a
c) The power if the load resistance is
• R= 0
• R→ ∞
Note that you will find a maximum in a function by setting its first derivative zero.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff76b43b9-ccee-44f5-a918-27c1f81bc882%2F0b152a59-042e-4fb1-85fc-ac4769de0f33%2Fpdirnz8.png&w=3840&q=75)
Transcribed Image Text:Q 3.
shows an energy source (battery) including its
internal resistance r completed with an external
The circuit in the diagram
r
load R. Find
| a'
a) an expression for the power delivered to
the load resistance R.
R
b) a condition under which the power deliv-
ered to the load R is maximal.
a
c) The power if the load resistance is
• R= 0
• R→ ∞
Note that you will find a maximum in a function by setting its first derivative zero.
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