The electron energy in hydrogen atom is given by En = (–2.18 × 10–18)/n2 J. Calculate the energy required to remove an electron completely from the n = 2 orbit. What is the longest wavelength of light in cm that can be used to cause this transition?
The expression for the energy of hydrogen of electron is
En = -2π2me4Z2/n2h2
Where m= mass of electrons
Z=atomic mass of atom
e = charge of electron
h = planck’s constant
When n = 1 then En = - (2.18X10-18 ) (GIVEN)
When n = 2 then En= - (2.18X10-18 )/4 = 0.5465X10-18 J
Therefore the energy required for ionization from n = 2 is 5.45 x 10-19 J
Now wavelength of light needed
= E=hv = hc/λ
Or
λ = [{(6.62x10-24)(3x108)} / 5.45] x 10-19 = 3647
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(a) n = 1, l = 0;
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(i) CH2=C=O,
(ii) CH3CH=CH2,
(iii) (CH3)2CO,
(iv) CH2=CHCN,
(v) C6H6
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(b) NaHSO4
(c) H4P2O7
(d) K2MnO4
(e) CaO2
(f) NaBH4
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(h) KAl(SO4)2.12 H2O
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(i) used to determine heat changes
(ii) whose value is independent of path
(iii) used to determine pressure volume work
(iv) whose value depends on temperature only.
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a) What is the initial effect of the change on vapour pressure?
b) How do rates of evaporation and condensation change initially?
c) What happens when equilibrium is restored finally and what will be the final vapour pressure?
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and calculate bond enthalpy of C – Cl in CCl4(g).
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ΔfH0 (CCl4) = –135.5 kJ mol–1.
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a) What is the initial effect of the change on vapour pressure?
b) How do rates of evaporation and condensation change initially?
c) What happens when equilibrium is restored finally and what will be the final vapour pressure?
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5.45*10to the -19
All wrong value of plank constant is 6626.10power_34
the answer is also wrong with no specified unit
The value of planck's constant is wrong.
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