a) Arrange the following types of electromagnetic radiation in order of decreasing wavelength: UV lights used in tanning salons (315nm); radiation from Radyo Katipunan FM Radio 87.9 MHz; the 580nm-yellow light from sodium vapor streetlights; radiation from mobile phones (1400 MHz). b) Arrange the following transitions of the hydrogen atom from shortest to longest wavelength of the photon emitted: n = 5 to n = 2; n = 4 to n = 3; n = 8 to n = 4; and n = 4 to n = 2. s) c) Arrange the following ions in order of decreasing ionic radius: K, CI, P², S², Ca²+

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5) For the following items, arrange the given list according to the specified categories. You may
use and >. Show all required solutions.
a) Arrange the following types of electromagnetic radiation in order of decreasing
wavelength: UV lights used in tanning salons (315nm); radiation from Radyo Katipunan
FM Radio 87.9 MHz; the 580nm-yellow light from sodium vapor streetlights; radiation
from mobile phones (1400 MHz).
b) Arrange the following transitions of the hydrogen atom from shortest to longest
wavelength of the photon emitted: n = 5 to n = 2; n = 4 to n = 3; n = 8 to n = 4; and n = 4
to n = 2. s)
c) Arrange the following ions in order of decreasing ionic radius: K, CI, P³, S², Ca²+
d) Given the following valence-shell electron configurations, identify each element and
arrange the elements in order of increasing ionization energy: 3)
i) 4s² 3d³
ii) 6s²
iii) 2s²2p²
iv) 3s²3p²
Transcribed Image Text:5) For the following items, arrange the given list according to the specified categories. You may use and >. Show all required solutions. a) Arrange the following types of electromagnetic radiation in order of decreasing wavelength: UV lights used in tanning salons (315nm); radiation from Radyo Katipunan FM Radio 87.9 MHz; the 580nm-yellow light from sodium vapor streetlights; radiation from mobile phones (1400 MHz). b) Arrange the following transitions of the hydrogen atom from shortest to longest wavelength of the photon emitted: n = 5 to n = 2; n = 4 to n = 3; n = 8 to n = 4; and n = 4 to n = 2. s) c) Arrange the following ions in order of decreasing ionic radius: K, CI, P³, S², Ca²+ d) Given the following valence-shell electron configurations, identify each element and arrange the elements in order of increasing ionization energy: 3) i) 4s² 3d³ ii) 6s² iii) 2s²2p² iv) 3s²3p²
5) For the following items, arrange the given list according to the specified categories. You may
use and >. Show all required solutions.
a) Arrange the following types of electromagnetic radiation in order of decreasing
wavelength: UV lights used in tanning salons (315nm); radiation from Radyo Katipunan
FM Radio 87.9 MHz; the 580nm-yellow light from sodium vapor streetlights; radiation
from mobile phones (1400 MHz).
b) Arrange the following transitions of the hydrogen atom from shortest to longest
wavelength of the photon emitted: n = 5 to n = 2; n = 4 to n = 3; n = 8 to n = 4; and n = 4
to n = 2. s)
c) Arrange the following ions in order of decreasing ionic radius: K, CI, P³, S², Ca²+
d) Given the following valence-shell electron configurations, identify each element and
arrange the elements in order of increasing ionization energy: 3)
i) 4s² 3d³
ii) 6s²
iii) 2s²2p²
iv) 3s²3p²
Transcribed Image Text:5) For the following items, arrange the given list according to the specified categories. You may use and >. Show all required solutions. a) Arrange the following types of electromagnetic radiation in order of decreasing wavelength: UV lights used in tanning salons (315nm); radiation from Radyo Katipunan FM Radio 87.9 MHz; the 580nm-yellow light from sodium vapor streetlights; radiation from mobile phones (1400 MHz). b) Arrange the following transitions of the hydrogen atom from shortest to longest wavelength of the photon emitted: n = 5 to n = 2; n = 4 to n = 3; n = 8 to n = 4; and n = 4 to n = 2. s) c) Arrange the following ions in order of decreasing ionic radius: K, CI, P³, S², Ca²+ d) Given the following valence-shell electron configurations, identify each element and arrange the elements in order of increasing ionization energy: 3) i) 4s² 3d³ ii) 6s² iii) 2s²2p² iv) 3s²3p²
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