Interpretation:Number of unpaired electrons present in
Concept introduction:The process by which electrons are distributed in molecular or atomic orbitals is termed as electronic configuration and is arranged in accordance to Aufbau principle. Hund’s rule of multiplicity states that electrons are filled singly in an orbital initially and then pairing occurs with different spin. Thus atomic orbital is filled in accordance to this rule.
The electrons that are present in the outermost shell of an atom are termed as valence electrons. In accordance to Aufbau principle electrons are filled in lower energy level and then to higher level. The electrons are arranged in order from higher energy level to lower level is as follows:
Electrons in orbitals are arranged as follows:
Total number of electrons occupied in each orbital is as follows:
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Chemical Principles
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- How many electrons in an atom can have the following quantum designation? (a) 1s (b) 4d, m l =0(c) n=5,l=2arrow_forwardGive the possible values of a. the principal quantum number, b. the angular momentum quantum number, c. the magnetic quantum number, and d. the spin quantum number.arrow_forward6.28 A neon atom cmi light at many wavelengths, two of which are at 616.4 and 638.3 nm. Both of these transitions are to the same final state. (a) What is the energy difference between the two states for each transition? (b) If a transition between the two higher energy states could be observed, what would be the frequency of the light?arrow_forward
- 6.17 The laser in most supermarket barcode scanners operates at a wavelength of 632.8 nm. What is the energy of a single photon emitted by such a laser? What is the energy of one mole of these photons?arrow_forwardMany times the claim is made that subshells half-filled with electrons are particularly stable. Can you suggest a possible physical basis for this claim?arrow_forwardWhich of the following statements is (are) true? I. The product of wavelength and frequency of light is a constant. II. As the energy of electromagnetic radiation increases, its frequency decreases. III. As the wavelength of light increases, its frequency increases. a I only b II only c III only d I and III only e II and III onlyarrow_forward
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