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(a)
Interpretation:
The element with its full and condensed electron configuration and the number of inner electrons is to be determined from the given partial orbital diagram.
Concept introduction:
The electronic configuration tells about the distribution of electrons in various atomic orbitals.
The full electronic configuration of an atom tells about the distribution of electrons in its various atomic orbital.
The condensed electronic configuration is a way to write the electronic configuration where the inner shell configurations are compressed to the nearest noble gas configuration and only the valence shell configuration is written in the expanded form.
The partial orbital diagram is the one that shows the distribution of valence electrons only.
The inner electrons are present in the inner orbitals of the atom and the valence electrons are present in the outermost shell of the atom.
The number of inner electrons is calculated by subtracting the valence electrons from the total number of electrons
(b)
Interpretation:
The element with its full and condensed electron configuration and the number of inner electrons is to be determined from the given partial orbital diagram.
Concept introduction:
The electronic configuration tells about the distribution of electrons in various atomic orbitals.
The full electronic configuration of an atom tells about the distribution of electrons in its various atomic orbital.
The condensed electronic configuration is a way to write the electronic configuration where the inner shell configurations are compressed to the nearest noble gas configuration and only the valence shell configuration is written in the expanded form.
The partial orbital diagram is the one that shows the distribution of valence electrons only.
The inner electrons are present in the inner orbitals of the atom and the valence electrons are present in the outermost shell of the atom.
The number of inner electrons is calculated by subtracting the valence electrons from the total number of electrons
(c)
Interpretation:
The element with its full and condensed electron configuration and the number of inner electrons is to be determined from the given partial orbital diagram.
Concept introduction:
The electronic configuration tells about the distribution of electrons in various atomic orbitals.
The full electronic configuration of an atom tells about the distribution of electrons in its various atomic orbital.
The condensed electronic configuration is a way to write the electronic configuration where the inner shell configurations are compressed to the nearest noble gas configuration and only the valence shell configuration is written in the expanded form.
The partial orbital diagram is the one that shows the distribution of valence electrons only.
The inner electrons are present in the inner orbitals of the atom and the valence electrons are present in the outermost shell of the atom.
The number of inner electrons is calculated by subtracting the valence electrons from the total number of electrons
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Chapter 8 Solutions
Chemistry: The Molecular Nature of Matter and Change (Looseleaf)
- I don't understand what to put for final step. Does that just mean termination? And would a radical form when I add bromine to ch2 between the rings?arrow_forwardNonearrow_forward11 1 Which one of the following compounds would show a proton NMR signal at the highest chemical shift? (7pts) cl @amitabh CI CI d) Cl CICIarrow_forward
- Nonearrow_forwardH2SO4 (cat.), H₂O 100 °C NH₂arrow_forwardX Draw the major products of the elimination reaction below. If elimination would not occur at a significant rate, check the box under the drawing area instead. ది www. Cl + OH Elimination will not occur at a significant rate. Click and drag to start drawing a structure.arrow_forward
- Nonearrow_forward1A H 2A Li Be Use the References to access important values if needed for this question. 8A 3A 4A 5A 6A 7A He B C N O F Ne Na Mg 3B 4B 5B 6B 7B 8B-1B 2B Al Si P 1B 2B Al Si P S Cl Ar K Ca Sc Ti V Cr Mn Fe Co Ni Cu Zn Ga Ge As Se Br Kr Rb Sr Y Zr Nb Mo Tc Ru Rh Pd Ag Cd In Sn Sb Te I Xe * Cs Ba La Hf Ta W Re Os Ir Pt Au Hg Tl Pb Bi Po At Rn Fr Ra Ac Rf Ha ****** Ce Pr Nd Pm Sm Eu Gd Tb Dy Ho Er Tm Yb Lu Th Pa U Np Pu Am Cm Bk Cf Es Fm Md No Lr Analyze the following reaction by looking at the electron configurations given below each box. Put a number and a symbol in each box to show the number and kind of the corresponding atom or ion. Use the smallest integers possible. cation anion + + Shell 1: 2 Shell 2: 8 Shell 3: 1 Shell 1 : 2 Shell 2 : 6 Shell 1 : 2 Shell 2: 8 Shell 1: 2 Shell 2: 8arrow_forwardNonearrow_forward
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