You are working in a lab where RC circuits are used to delay the initiation of a process. One particular experiment involves an RC circuit with a half-life of = 3.00 s. Your supervisor is concerned that the initiation of the process is t1/2 occurring too soon and that the half-life needs to be extended. He asks you to change the resistance of the circuit to make the half-life longer. All you can find in the supply room is a single 55.0 Q resistor. You look at the RC circuit and see that the resistance is 61.0 Q. You combine the new resistor with the old to extend the half-life of the circuit. Determine the new half-life (in s). S

University Physics Volume 2
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Chapter10: Direct-current Circuits
Section: Chapter Questions
Problem 86AP: A flashing lamp in a Christmas earring is based on an RC discharge of a capacitor through its...
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You are working in a lab where RC circuits are used to delay the initiation of a process. One particular experiment involves an RC circuit with a half-life of = 3.00 s. Your supervisor is concerned that the initiation of the process is
t1/2
occurring too soon and that the half-life needs to be extended. He asks you to change the resistance of the circuit to make the half-life longer. All you can find in the supply room is a single 55.0 Q resistor. You look at the RC circuit and
see that the resistance is 61.0 Q. You combine the new resistor with the old to extend the half-life of the circuit. Determine the new half-life (in s).
S
Transcribed Image Text:You are working in a lab where RC circuits are used to delay the initiation of a process. One particular experiment involves an RC circuit with a half-life of = 3.00 s. Your supervisor is concerned that the initiation of the process is t1/2 occurring too soon and that the half-life needs to be extended. He asks you to change the resistance of the circuit to make the half-life longer. All you can find in the supply room is a single 55.0 Q resistor. You look at the RC circuit and see that the resistance is 61.0 Q. You combine the new resistor with the old to extend the half-life of the circuit. Determine the new half-life (in s). S
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