MOLECULAR BIOLOGY OF THE CELL
MOLECULAR BIOLOGY OF THE CELL
6th Edition
ISBN: 9780393870947
Author: ALBERTS
Publisher: NORTON
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Chapter 14, Problem 11P

A.

Summary Introduction

To calculate: The energy of a mole of photon at 400nm (violet light), 680 (red light) nm and 800 (near-infrared light) nm.

A.

Expert Solution
Check Mark

Explanation of Solution

Calculation:

Mole of photons, N = 6×1023 photons/mole

Here the energy of photon at any given wavelength is equal to product of one photon and Avogadro number.

Planck’s constant, h = 6.6×10-37kJ sec / photon=1.58×10-37kJ sec / photon

Velocity of light, c = 3×1017 nm/sec

Energy of mole of photon at 400nm λ, E= Nhcλ

E=6×1023photonsmole×1.58×10-37kcal/secphoton×3×1017nmsec×1400nm=71kcal/mole

Energy of mole of photon at 680nm λ, E= Nhcλ

E=6×1023photonsmole×1.58×10-37kcal/secphoton×3×1017nmsec×1680nm=42kcal/mole

Energy of mole of photon at 800nm λ, E= Nhcλ

E=6×1023photonsmole×1.58×10-37kcal/secphoton×3×1017nmsec×1800nm=36kcal/mole

Conclusion
The energy of a mole of photon at 400nm (violet light), 680 (red light) nm and 800 (near-infrared light) nm is 71 kcal/mole, 42 kcal/mole and 36 kcal/mole respectively.

B.

Summary Introduction

To calculate: The number of seconds it would take for a mole of photons to strike a square meter of leaf.

B.

Expert Solution
Check Mark

Explanation of Solution

Calculation:

One square meter of leaf receives = 0.3 kcal/sec of 680 nm light

Energy of a mole of photon at 680 nm of light = 42 kcal/mole

Time taken by a square meter of leaf to receive one mole of photon,

t= EnergyoflightreceivedEnergyofphotonsfor680nmlight

t=sec0.3kcal×42kcalmole=140sec/mole

Conclusion
It takes 140 seconds for a mole of photons to strike a square meter of leaf.

C.

Summary Introduction

To calculate: The time it would take a tomato plant with a leaf area of 1 square meter to make a mole of glucose from CO2

C.

Expert Solution
Check Mark

Explanation of Solution

Calculation:

Time taken for mole of photons to strike a square meter of leaf = 140 seconds.

No. of photons required to fix a molecule of CO2= 8

Time taken to synthesize a mole of glucose is given as t

t=140secmolephotons×8molephotonsmoleCO2×6moleCO2moleglucose=6720sec=112min

Conclusion
For a tomato plant with leaf area of 1 sq.meter it would take 112 minutes to make a mole of glucose from CO2. The obtained value is an exaggeration as the incident photons are not entirely captured by the 1 sq.meter of leaf. Several factors like saturation of Photosystem, location of leaf on the stem and many more affect the overall efficiency.

D.

Summary Introduction

To calculate: The efficiency of conversion of light energy into chemical energy after photon capture.

D.

Expert Solution
Check Mark

Explanation of Solution

Calculation:

Efficiency=TimetakentogenerateamoleofglucoseNo.ofphotonsrequiredtofixamoleculeofCO2×Energy of mole of photon at 680nmλ

Efficiencyin%=moleCO28molephotons×molephotons42kcal×112kcalmoleCO2×100=33%

Conclusion
The efficiency of conversion of light energy into chemical energy after photon capture is 33%.

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