Bioblast quiz: Difference between revisions

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{Why should we do that?
{Why should we do that?
|type="()"}
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+ identical [[motive unit]]s [MU]
+ To express both in identical [[motive unit]]s [MU]
|| To relate the driving force of electron transfer to the pmf, we have to express both forces in identical [[motive unit]]s [MU], converting either the force of the chemical reaction from the [[molar format]] to the [[electrical format]], or the pmf from the electrical to the molar format.
|| If we want to relate the driving force of electron transfer to the '''pmf''', we have to express both forces in identical [[motive unit]]s [MU], converting either the force of the chemical reaction from the [[molar format]] to the [[electrical format]], or the '''pmf''' from the electrical to the molar format.
- To feel insecure
- To feel insecure
- To compliment brain mitochondria
|| Of course not! You must be sure about the terminology, after that you will better understand the problematics!
If we want to relate the driving force of electron transfer to the '''pmf''', we have to express both forces in identical [[motive unit]]s [MU], converting either the force of the chemical reaction from the [[molar format]] to the [[electrical format]], or the '''pmf''' from the electrical to the molar format.
- To compliment our brain mitochondria
|| You should better practice your brain mitochondria and not compliment them! :) However if we want to relate the driving force of electron transfer to the '''pmf''', we have to express both forces in identical [[motive unit]]s [MU], converting either the force of the chemical reaction from the [[molar format]] to the [[electrical format]], or the '''pmf''' from the electrical to the molar format.
- To get free drinks
- To get free drinks
|| Maybe not free but you sure deserve some after this lecture! :) However if we want to relate the driving force of electron transfer to the '''pmf''', we have to express both forces in identical [[motive unit]]s [MU], converting either the force of the chemical reaction from the [[molar format]] to the [[electrical format]], or the '''pmf''' from the electrical to the molar format.


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Revision as of 21:16, 4 November 2018

Self educational quizzes

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Exemplary Quiz

(Note: Questions in this exemplary quiz were used from a set of questions prepared by Gnaiger Erich for his presentation at MiPschool Tromso-Bergen 2018: The protonmotive force and respiratory control. 1. Coupling of electron transfer reactions to vectorial translocation of protons. 2. From Einstein’s diffusion equation on gradients to Fick’s law on compartments.

Original link here: Gnaiger 2018 MiPschool Tromso A2


(Only one correct answer)

Convert the molar format of the Gibbs force of reaction, Ξ”kFnO2 [kJ/mol], into the electrical format, Ξ”kFeO2 [V].

1 Which physicochemical constant is required?

2 What is the meaning of the symbol zO2?

Alphabetical order of O2 isotope
Atomic number of O2 = 8
Charge number of O2 = 4
Elementary charge of O2 in [C]

3 How are the units of electric energy [J] and electric force [V] related?

V = J/C.F)
V = J.F)/C
V = J.C
V = J/C

4 Express -460 kJ/mol O2 as electrical force in units of volt [V].

- 120 V
1.2 V
-1.2 V
- 1.2 kV

5 Why should we do that?

To get free drinks
To feel insecure
To express both in identical motive units [MU]
To compliment our brain mitochondria


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