Calculate AG for the reaction G + H <=> I + J when [G] = 0.0132 mM, [H] = 35.1 uM, [1] = 55.6 uM, [J] 18.7 uM, the temperature = 37 °C and AG° = -48.2 kJ/mol. Keep concentration units in uM. -50.3 kJ/mol O-39.1 kJ/mol -46 kJ/mol -25.8 kJ/mol

Biochemistry
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ISBN:9781319114671
Author:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
Publisher:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
Chapter1: Biochemistry: An Evolving Science
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### Calculation of ΔG for the Reaction

**Given Reaction:**
G + H ⇌ I + J

**Concentrations:**  
- [G] = 0.0132 mM  
- [H] = 35.1 µM  
- [I] = 55.6 µM  
- [J] = 18.7 µM   

**Temperature:**  
37°C

**Standard Free Energy Change (ΔG°):**  
-48.2 kJ/mol

**Instructions:**  
Calculate ΔG for the given reaction using the provided concentrations and temperature. Keep concentration units in µM.

**Options:**  
- \(-50.3 \text{ kJ/mol}\)
- \(-39.1 \text{ kJ/mol}\)
- \(-46 \text{ kJ/mol}\)
- \(-25.8 \text{ kJ/mol}\)

**Note:** There are no graphs or diagrams associated with this question.
Transcribed Image Text:### Calculation of ΔG for the Reaction **Given Reaction:** G + H ⇌ I + J **Concentrations:** - [G] = 0.0132 mM - [H] = 35.1 µM - [I] = 55.6 µM - [J] = 18.7 µM **Temperature:** 37°C **Standard Free Energy Change (ΔG°):** -48.2 kJ/mol **Instructions:** Calculate ΔG for the given reaction using the provided concentrations and temperature. Keep concentration units in µM. **Options:** - \(-50.3 \text{ kJ/mol}\) - \(-39.1 \text{ kJ/mol}\) - \(-46 \text{ kJ/mol}\) - \(-25.8 \text{ kJ/mol}\) **Note:** There are no graphs or diagrams associated with this question.
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