(a) Interpretation: The Lewis structure of molecules or ions, spatial orientation of electron pairs and the simple geometric structure indicating the approximate bond angles of that molecules or ions should be determined. Concept Introduction: Lewis structure represents the valence electron arrangement around the atoms of the molecule. Lewis structure can be drawn for ionic or covalent bonds. When predicting the geometric structure, VSPER theory is used. The three-dimensional structure of atoms in.
(a) Interpretation: The Lewis structure of molecules or ions, spatial orientation of electron pairs and the simple geometric structure indicating the approximate bond angles of that molecules or ions should be determined. Concept Introduction: Lewis structure represents the valence electron arrangement around the atoms of the molecule. Lewis structure can be drawn for ionic or covalent bonds. When predicting the geometric structure, VSPER theory is used. The three-dimensional structure of atoms in.
The Lewis structure of molecules or ions, spatial orientation of electron pairs and the simple geometric structure indicating the approximate bond angles of that molecules or ions should be determined.
Concept Introduction:
Lewis structure represents the valence electron arrangement around the atoms of the molecule. Lewis structure can be drawn for ionic or covalent bonds.
When predicting the geometric structure, VSPER theory is used. The three-dimensional structure of atoms in.
Expert Solution
Answer to Problem 46CR
Explanation of Solution
For H2 O
Part A Step 1 →
O−6H−1x2
Sum(total atoms) =8
Step 2 →
Pair of electrons = 8/2=4
Electron pairs for bonds = 2
Step 3 → Remaining electron pairs = 2
Part B Step 1 → Lewis structure
Step 2 → 4 electron pairs around O atom. So that electron pairs geometry around the O atom is tetrahedral.
Step 3 → But around the O atom,
No: of bonding pairs = 2
No: of non- bonding pairs = 2
Step 4 → Name of the structure = V-shaped or Bend.
Interpretation Introduction
(b)
Interpretation:
The Lewis structure of molecules or ions, spatial orientation of electron pairs and the simple geometric structure indicating the approximate bond angles of that molecules or ions should be determined.
Concept Introduction:
Lewis structure represents the valence electron arrangement around the atoms of the molecule. Lewis structure can be drawn for ionic or covalent bonds.
When predicting the geometric structure, VSPER theory is used. The three-dimensional structure of atoms in.
Expert Solution
Answer to Problem 46CR
Explanation of Solution
For PH3 Part A Step 1 → P−5
H−1x3
Sum =8
Step 2 → Pair of electrons = 8/2=4
Electron pairs for bonds = 3
Step 3 → Remain electron pairs = 1
Part B Step 1 → Lewis structure
Step 2 → 4 electron pairs around P atom. So that electron pairs geometry around the P atom is tetrahedral.
Step 3 → But around the P atom, No: of bonding pairs = 3
No: of non- bonding pairs = 1
Step 4 → Name of the structure = Trigonal pyramid.
Interpretation Introduction
(c)
Interpretation:
The Lewis structure of molecules or ions, spatial orientation of electron pairs and the simple geometric structure indicating the approximate bond angles of that molecules or ions should be determined.
Concept Introduction:
Lewis structure represents the valence electron arrangement around the atoms of the molecule. Lewis structure can be drawn for ionic or covalent bonds.
When predicting the geometric structure, VSPER theory is used. The three-dimensional structure of atoms in.
Expert Solution
Answer to Problem 46CR
CBr4
Explanation of Solution
CBr4 Part A. Step 1 → C−4
Br−7x4
Sum = 32
Step 2 → Pair of electrons = 32/2=16
Electron pairs for bonds = 4
Step 3 → Remain electron pairs = 12(3×4)
Part B Step 1 → Lewis structure
Step 2 → 4 electron pairs around C atom. So that electron pairs geometry around the C atom is tetrahedral.
Step 3 → But around the C atom, No: of bonding pairs = 4
No: of non- bonding pairs = 0
Step 4 → Name of the structure = Tetrahedral.
Interpretation Introduction
(d)
Interpretation:
The Lewis structure of molecules or ions, spatial orientation of electron pairs and the simple geometric structure indicating the approximate bond angles of that molecules or ions should be determined.
Concept Introduction:
Lewis structure represents the valence electron arrangement around the atoms of the molecule. Lewis structure can be drawn for ionic or covalent bonds.
When predicting the geometric structure, VSPER theory is used. The three-dimensional structure of atoms in.
Expert Solution
Answer to Problem 46CR
ClO4−.
Explanation of Solution
For ClO4 -
Part A. Step 1 → Cl−7
O−6x4
(−1) charge ( one more electron
Sum = 31+1=32
Step 2 → Pair of electrons = 32/2=16
Electron pairs for bonds = 4
Step 3 → Remain electron pairs = 12(3×4)
Part B Step 1 → Lewis structure
Step 2 → 4 electron pairs around Cl atom. So that electron pairs geometry around the Cl atom is tetrahedral.
Step 3 → But around the Cl atom, No: of bonding pairs = 4
No: of non- bonding pairs = 0
Step 4 → Name of the structure = Tetrahedral
But considering resonance, the exact position of three p bonds cannot be determined exactly. It provides a p cloud over the molecule. So that a resonance hybrid determines the exact structure of ClO4 - molecule.
Interpretation Introduction
(e)
Interpretation:
The Lewis structure of molecules or ions, spatial orientation of electron pairs and the simple geometric structure indicating the approximate bond angles of that molecules or ions should be determined.
Concept Introduction:
Lewis structure represents the valence electron arrangement around the atoms of the molecule. Lewis structure can be drawn for ionic or covalent bonds.
When predicting the geometric structure, VSPER theory is used. The three-dimensional structure of atoms in.
Expert Solution
Answer to Problem 46CR
BF3
Explanation of Solution
BF3
Part A. Step 1 → B−3
F−7x3
Sum = 24
Step 2 → Pair of electrons = 24/2=12
Electron pairs for bonds = 3
Step 3 → Remain electron pairs = 9(3×3)
Part B Step 1 → Lewis structure
Step 2 → 3 electron pairs around B atom. So that electron pairs geometry around the B atom is Trigonal planar.
Step 3 → Also around the B atom,
No: of bonding pairs = 3
No: of non- bonding pairs = 0
Step 4 → Name of the structure = Trigonal planar.
Interpretation Introduction
(f)
Interpretation:
The Lewis structure of molecules or ions, spatial orientation of electron pairs and the simple geometric structure indicating the approximate bond angles of that molecules or ions should be determined.
Concept Introduction:
Lewis structure represents the valence electron arrangement around the atoms of the molecule. Lewis structure can be drawn for ionic or covalent bonds.
When predicting the geometric structure, VSPER theory is used. The three-dimensional structure of atoms in.
Expert Solution
Answer to Problem 46CR
BeF2.
Explanation of Solution
BeF2
Part A. Step 1 → Be−2
F−7×2
Sum = 16
Step 2 → Pair of electrons = 16/2=8
Electron pairs for bonds = 2
Step 3 → Remain electron pairs = 6(3×2)
Part B Step 1 → Lewis structure
Step 2 → 2 electron pairs around Be atom. So that electron pairs geometry around the Be atom is Linear.
Step 3 → Also around the Be atom, No: of bonding pairs = 3
No: of non- bonding pairs = 0
Step 4 → Name of the structure = Linear
.
Want to see more full solutions like this?
Subscribe now to access step-by-step solutions to millions of textbook problems written by subject matter experts!
You have started a patient on a new drug. Each dose introduces 40 pg/mL of drug after redistribution and prior to elimination. This drug is administered at 24 h intervals and has a half life of 24 h. What will the concentration of drug be after each of the first six doses? Show your work
a. What is the concentration after the fourth dose? in pg/mL
b. What is the concentration after the fifth dose? in pg/mL
c. What is the concentration after the sixth dose? in pg/mL
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, chemistry and related others by exploring similar questions and additional content below.