Which of the following transitions will produce the photon with the shortest wavelength?
Choice D, n = 3 to n = 1, will produce the shortest wavelength since the distance between the energy levels is the greatest. The answer is D. n = 3 to n = 1.
How do you calculate the transition energy level?
Using the formula above, we can calculate how much energy is absorbed/released during the transition of an electron. The energy change during the transition of an electron from n = n 1 n=n_1 n=n1 to n = n 2 n=n_2 n=n2 is Δ E = E 2 − E 1 = 13.6 × ( 1 n 1 2 − 1 n 2 2 ) eV .
Which transition will produce the least energetic photon?
Thus least energetic photon is observed in transition of n=6 to n=5. Thus answer is option D.
How do you find the least energetic photon?
Energy levels are inverse proportion to the square of n. Therefore the least energetic photon would be when the difference between the energy levels is least. This would be when the difference is only 1 level of n. Higher the n, lower the energy.
Which of the following transactions are in a hydrogen atom?
Complete step-by-step answer: E=hγ where h is the Planck’s constant and γ is the frequency of the emitted radiation. From this we can conclude that if the difference between the transition from higher to lower energy states is large, then the frequency of emitted radiation will also be more.
Which of the following transition in hydrogen atom will require the largest amount of energy?
From the above calculations, it is seen that the largest amount of energy will be required for the the transition from n= 1 to n = 2. Hence, the correct option is 1.
Which of the following transition in hydrogen atom will require the highest amount of energy?
ΔE1>ΔE2 and therefore the first transition would require the most significant amount of energy input.
Which of the following transition for hydrogen atom will have longest wavelength?
Higher the value of the principle quantum number to which electron is jumping, longer will be the wavelength. So, n = 6, p = 8 transition produces longest wavelength.
Which of the following transition in Balmer series for hydrogen atom will have longest wavelength?
For the Balmer series, ni = 2. Thus, the expression of wavenumber(ṽ) is given by, Wave number (ṽ) is inversely proportional to wavelength of transition. Hence, for the longest wavelength transition, ṽ has to be the smallest.
Which series has the highest energy in hydrogen spectrum?
lyman series