Concept explainers
Write three resonance structures for hydrazoic acid, HN3. The atomic arrangement is HNNN. Show formal charges.
Interpretation: The resonance structure of the hydrazoic acid molecule should be found.
Concept Introduction: Sometimes the chemical bonding of a molecule cannot be represented using a single Lewis structure. In these cases, the chemical bonding are described by delocalization of electrons and is known as resonance.
In some molecules, there is possibility of more than one Lewis structure where all the structures are equally acceptable. One of the acceptable Lewis structures of these molecules is called resonance structure.
All the possible resonance structures are imaginary whereas the resonance hybrid is real.
Any of the possible structure does not exist as such like a stable real molecule. So it is not possible to isolate one resonance structure.
These structures will differ only in the arrangement of the electrons not in the relative position of the atomic nuclei.
Structure with greater number of covalent bonds are more stable comparing to that with lower number of covalent bonds.
Structure which does not involve charge separation is more stable when comparing with structure having positive and negative charge separation.
While drawing resonance structure of a molecule some rules should be followed where the position, over whole charge and chemical framework remains intact. Also only π and nonbonding electron has been moved in all the three resonance structures
Answer to Problem 9.57QP
The given atomic arrangement of
Resonance structure of hydrazoic acid is drawn below.
Explanation of Solution
In the case of hydrazoic acid, the chemical bonding of a molecule cannot be represented using a single Lewis structure. The chemical bonding are described by delocalization of electrons forming 3 possible resonance structures. In all the 3 resonance structures the position, over whole charge and chemical framework remains intact.
The resonance structures of the hydrazoic acid molecule were drawn.
Interpretation: The formal charges of hydrazoic acid molecule should be found.
Concept Introduction
A formal charge (FC) is the charge assigned to an atom in a molecule, irrespective of relative electronegativity by thinking that electrons in all chemical bonds are shared equally among atoms.
This method is used to identify the most probable Lewis structures if more than one possibility exists for a compound.
The Lewis structure with formal charge on each of the atoms close to zero is taken as the most plausible structure.
Formal charge of an atom can be determined by the given formula.
Answer to Problem 9.57QP
Formal charge for the given resonance structure is given below
Explanation of Solution
The formal charge of the given compound is calculated,
- Hydrogen atom
Substituting these values to the equation,
- First nitrogen atom
Substituting these values to the equation,
- Second nitrogen atom
Substituting these values to the equation,
- Third nitrogen atom
Substituting these values to the equation,
Formal charge of the given resonance structure is given below
The formal charge of the given compound is calculated,
- Hydrogen atom
Substituting these values to the equation,
- First nitrogen atom
Substituting these values to the equation,
- Second nitrogen atom
Substituting these values to the equation,
- Third nitrogen atom
Substituting these values to the equation,
Formal charge of the given resonance structure is given below
The formal charge of the given compound is calculated,
- Hydrogen atom
Substituting these values to the equation,
- First nitrogen atom
Substituting these values to the equation,
- Second nitrogen atom
Substituting these values to the equation,
- Third nitrogen atom
Substituting these values to the equation,
The formal charges of hydrazoic acid molecule were shown.
Want to see more full solutions like this?
Chapter 9 Solutions
ALEKS 360; 18WKS F/ GEN. CHEMISTRY >I<
- Consider the pyrosulfate ion, S2O72-. It has no sulfur–sulfur nor oxygen–oxygen bonds. (a) Write a Lewis structure for the pyrosulfate ion using only single bonds. (b) What is the formal charge on the sulfur atoms for the Lewis structure you drew in part (a)? (c) Write another Lewis structure using six bonds and two O—S bonds. (d) What is the formal charge on each atom for the structure you drew in part (c)?arrow_forwardUsing the bond dissociation enthalpies in Table 8.8, estimate the enthalpy of combustion of gaseous methane, CH4, to give water vapor and carbon dioxide gas.arrow_forwardDraw the two resonance structures of CINO, with N as the central atom. Give the formal charges of all of the atoms.arrow_forward
- Write all resonance structures for NCO− ion. Use formal charges to predict the most stable one (i.e. the one that has the lowest energy configuration) and the least stable. Briefly explain.arrow_forwardWrite the Lewis structure for each ion. Include resonance structures if necessary and assign formal charges to all atoms. If necessary, expand the octet on the central atom to lower formal charge. HSO4-arrow_forwardFor NO2- What is the molecular geometry? Give the formal charges for each atom. What is another resonance structure?arrow_forward
- What possible error(s) exist in the Lewis structure (assume we are trying to represent the best possible Lewis structure for the NO₂S ion knowing N is the central atom in this polyatomic ion)? [:ö==S: N= CO :O: The best structure would have double bond and two lone pairs on each oxygen atom and a single bond with three lone pairs on the sulfur. There are no errors. This is the best possible structure. The Lewis structure above does not minimize formal charges, thus is the not the best possible structure. The nitrogen atom has an expanded octet, and this structure is impossible. The Lewis structure contains the wrong number of electrons, thus this structure is impossible.arrow_forwardHydrogen azide (HN3) is a shock-sensitive liquid, which means it explodes when subjected to a physical shock. The HN3molecule contains two N-N bonds with bond lengths 113 pm and 124 pm. The H-N-N bond angle is 112°. Draw two Lewis structures of HN3 that obey the octet rule. What is the formal charge of each atom in your structures? Which structure is most consistent with the experimental data?arrow_forwardUsing formal charge as a guide, choose the most favorable Lewis structure for the phosphate ion, PO43-. (Note: electronegativity values: P = 2.1, O = 3.5) Group of answer choices Structure II Structure II Structure I All three structures are equally favorable.arrow_forward
- An incomplete Lewis structure is shown below. The structure only shows the atoms and how they are connected. The molecule has a net charge of zero. H Н—N—С- -о—с—Н H H Complete the Lewis structure giving all atoms full octets. If there is more than one way to do this, draw resonance structures showing all possibilities. If not, just draw one Lewis structure. Be sure to write in any non-zero formal charges. Click and drag to start drawing a structure.arrow_forwardCarbon, nitrogen, and oxygen form two different polyatomic ions: cyanate ion (NCO) and fulminate ion (CNO). Write Lewis structures for each anion, including near-equivalent resonance structures (do not add any arrows between structures) and indicating formal charges. The isocyanate ion also has two near-equivalent structures, but the formal charge on the nitrogen attom cannot be reduced to zero: Cyanate ion (NCO)arrow_forwardWhat are the Lewis structures for each of these; NO2+, NO2-, N2O, N2O5, N2O3?arrow_forward
- Chemistry: Principles and PracticeChemistryISBN:9780534420123Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward MercerPublisher:Cengage LearningChemistry: The Molecular ScienceChemistryISBN:9781285199047Author:John W. Moore, Conrad L. StanitskiPublisher:Cengage LearningChemistry: Principles and ReactionsChemistryISBN:9781305079373Author:William L. Masterton, Cecile N. HurleyPublisher:Cengage Learning
- Chemistry & Chemical ReactivityChemistryISBN:9781337399074Author:John C. Kotz, Paul M. Treichel, John Townsend, David TreichelPublisher:Cengage LearningGeneral Chemistry - Standalone book (MindTap Cour...ChemistryISBN:9781305580343Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; DarrellPublisher:Cengage Learning