A heart defibrillator passes 11.5 A through a patient's torso for 5.00 ms in an attempt to restore normal beating. (a) How much charge passed? ____C (b) What voltage was applied if 476 J of energy was dissipated? _____kV (c) What was the path's resistance? _____kΩ (d) Find the temperature increase caused in the 8.00 kg of affected tissue. The specific heat of tissue is 3500 J/(kg · °C). _____°C
A heart defibrillator passes 11.5 A through a patient's torso for 5.00 ms in an attempt to restore normal beating. (a) How much charge passed? ____C (b) What voltage was applied if 476 J of energy was dissipated? _____kV (c) What was the path's resistance? _____kΩ (d) Find the temperature increase caused in the 8.00 kg of affected tissue. The specific heat of tissue is 3500 J/(kg · °C). _____°C
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A heart defibrillator passes 11.5 A through a patient's torso for 5.00 ms in an attempt to restore normal beating.
(a) How much charge passed?
____C
(b) What voltage was applied if 476 J of energy was dissipated?
_____kV
(c) What was the path's resistance?
_____kΩ
(d) Find the temperature increase caused in the 8.00 kg of affected tissue. The specific heat of tissue is 3500 J/(kg · °C).
_____°C
____C
(b) What voltage was applied if 476 J of energy was dissipated?
_____kV
(c) What was the path's resistance?
_____kΩ
(d) Find the temperature increase caused in the 8.00 kg of affected tissue. The specific heat of tissue is 3500 J/(kg · °C).
_____°C
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