(02.03 lc)\nwhat is the total number of electrons that can occupy the f sublevel?\n\na 2 electrons\nb 6…

(02.03 lc)\nwhat is the total number of electrons that can occupy the f sublevel?\n\na 2 electrons\nb 6 electrons\nc 10 electrons\nd 14 electrons\n\npregunta 2 (3 puntos)\n(02.03 lc)\nselect the words that correctly fill in the blanks for this statement:\nthe p sublevel has ______ orbitals that are ______ - shaped.\n\na three, dumbbell\nb three, spherical\nc five, dumbbell\nd five, spherical\n\npregunta 3 (3 puntos)\n(02.03 lc)\nwhich of the following is not a possible sublevel?\n\na 1s\nb 2d\nc 3p\nd 4f

(02.03 lc)\nwhat is the total number of electrons that can occupy the f sublevel?\n\na 2 electrons\nb 6 electrons\nc 10 electrons\nd 14 electrons\n\npregunta 2 (3 puntos)\n(02.03 lc)\nselect the words that correctly fill in the blanks for this statement:\nthe p sublevel has ______ orbitals that are ______ - shaped.\n\na three, dumbbell\nb three, spherical\nc five, dumbbell\nd five, spherical\n\npregunta 3 (3 puntos)\n(02.03 lc)\nwhich of the following is not a possible sublevel?\n\na 1s\nb 2d\nc 3p\nd 4f

Answer

Brief Explanations:

  1. The f - sublevel has 7 orbitals and each orbital can hold 2 electrons. So, (7\times2 = 14) electrons can occupy the f - sublevel.
  2. The p - sublevel has 3 orbitals and the shape of p - orbitals is dumb - bell shaped.
  3. The principal quantum number (n) determines the possible sublevels. For a given (n), the angular - momentum quantum number (l) can have values from 0 to (n - 1). When (n=2), (l = 0,1) corresponding to s and p sublevels respectively. So, 2d is not a possible sublevel.

Answer:

  1. d. 14 electrons
  2. a. three, dumbbell
  3. b. 2d