Calculate the concentration inside a membrane where the concentration outside is moles m3 C₁ =3 is AV = 0.0640 Volts. Remember, the Boltzmann probability factor: J 7 the temperature is T = 284 K and the voltage across the membrane ΔΕ Ze kBT, Boltzmann's constant is kB 1.38 x 10-23, and the 10-19 C. Express your answer in charge on a proton ise = +1.6 x moles m³ [note that 1000 = 1 moles m³ - mole Liter ;]
Calculate the concentration inside a membrane where the concentration outside is moles m3 C₁ =3 is AV = 0.0640 Volts. Remember, the Boltzmann probability factor: J 7 the temperature is T = 284 K and the voltage across the membrane ΔΕ Ze kBT, Boltzmann's constant is kB 1.38 x 10-23, and the 10-19 C. Express your answer in charge on a proton ise = +1.6 x moles m³ [note that 1000 = 1 moles m³ - mole Liter ;]
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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![Calculate the concentration inside a membrane where the concentration outside is
C₁ =3
moles
7
the temperature is T = 284 K and the voltage across the membrane
is AV = 0.0640 Volts. Remember, the Boltzmann probability factor:
m3
ΔΕ
Ze BT, Boltzmann's constant is kB 1.38 x 10-23, and the
J
10-19 C. Express your answer in
charge on a proton ise = +1.6 x
moles
m³
= 1
[note that 1000 moles
m³
1
mole
Liter
;]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff946beb2-77bf-4a5b-8835-b81f9542ffd2%2Fbcfc19b0-e271-4976-9db1-fc7a54d30c7c%2F3gejp0r_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Calculate the concentration inside a membrane where the concentration outside is
C₁ =3
moles
7
the temperature is T = 284 K and the voltage across the membrane
is AV = 0.0640 Volts. Remember, the Boltzmann probability factor:
m3
ΔΕ
Ze BT, Boltzmann's constant is kB 1.38 x 10-23, and the
J
10-19 C. Express your answer in
charge on a proton ise = +1.6 x
moles
m³
= 1
[note that 1000 moles
m³
1
mole
Liter
;]
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