It takes 338. kJ/mol to break an carbon-chlorine single bond. Cal broken by absorbing a single photon Iculate the maximum wavelength of light for which an carbon-chiorine single bond could be Round your answer to 3 significant digits

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Question:

It takes 338. kJ/mol to break an carbon-chlorine single bond. Cal broken by absorbing a single photon Iculate the maximum wavelength of light for which an carbon-chiorine single bond could be Round your answer to 3 significant digits

Answer:

Answer:

354 nm

Explanation:

?f=E%3D%5Cfrac%7Bh%5Ctimes%20c%7D%7B%5Clambda%7D

Where,  

h is Plank’s constant having value ?f=6

c is the speed of light having value ?f=3%5Ctimes%2010%5E8%5C%20m%2Fs

?f=%5Clambda is the wavelength of the light

So,  Given that:- Energy = 338. kJ/mol = 338000 J/mol

Also, ?f=N a%3D6

So, Energy for single photon = ?f=%5Cfrac%7B338000%7D%7B6

Applying the values in the above equation as:-

?f=%5Cfrac%7B338000%7D%7B6.023%5Ctimes%2010%5E%7B23%7D%7D%3D%5Cfrac%7B6

?f=69%5Ctimes%20%5C%3A10%5E%7B26%7D%5Clambda%3D5%5E%7B20%7D%5Ctimes%20%5C%3A62770482

?f=%5Clambda%3D354%5Ctimes%2010%5E%7B 9%7D%5C%20m%3D354%5C%20nm

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