Interpretation:
The reason due to which sodium metals deforms but sodium chloride shatters when the same amount of force is applied needs to be explained.
Concept introduction:
In ionic compounds, the ionic bonds form unique physical structures, unlike other compounds. Ionic bond binds oppositely charged particles together.
Answer to Problem 110A
On applying force, sodium metals deforms because the like charge cation force each other and the repulsive force breaks the crystal. While in sodium chloride cation and anion exist together in a ratio determined by the number of electrons transferred from the metal to non-metal and these bind together in a repeating manner and balances the force of attraction and repulsion between the ions. So, they shatters.
Explanation of Solution
An ionic bond is formed when an anion comes in close proximity to a cation to produce a more stable compound than the two ions alone. In contrast, a metallic bond is formed between delocalized electrons that is sea of electrons and the metal cation which produce when the electrons go away from the metal atom. The sea of electrons in a metallic solid allows the metal cations to slide past each other not to take position themselves next to another cation. When a force is applied to an ionic solid the same charged ions force each other and resulting repulsive force breaks the crystal lattice.
In sodium chloride, each positive sodium ion is surrounded by negative chloride ion. But in sodium metal only like charge cation is present.
Chapter 7 Solutions
Glencoe Chemistry: Matter and Change, Student Edition
Additional Science Textbook Solutions
Physics for Scientists and Engineers: A Strategic Approach, Vol. 1 (Chs 1-21) (4th Edition)
Introductory Chemistry (6th Edition)
Chemistry: Structure and Properties (2nd Edition)
College Physics: A Strategic Approach (3rd Edition)
Human Anatomy & Physiology (2nd Edition)
Applications and Investigations in Earth Science (9th Edition)
- Pt + H₂ Draw the molecule on the canvas by choosing buttons from the Tools (for bonds), Atoms, and Advanced Templ 9 2 0 © 120arrow_forwardComplete boxes in the flow chart. Draw the structure of the organic compound foundin each layer after adding 3M NaOH and extraction. Make sure to include any charges. Provide explanation on answers.arrow_forward== Vid4Q2 Unanswered ☑ Provide IUPAC name of product in the reaction below A 3,4-dimethylcyclohexene B 1,2-dimethylcyclohexane C 1,2-dimethylcyclohexene D 3,4-dimethylcyclohexane H₂ Pdarrow_forward
- 5. Use the MS data to answer the questions on the next page. 14.0 1.4 15.0 8.1 100- MS-IW-5644 26.0 2.8 27.0 6.7 28.0 1.8 29.0 80 4.4 38.0 1.0 39.0 1.5 41.0 1.2 42.0 11.2 43.0 100.0 44.0 4.3 79.0 1.9 80.0 2.6 Relative Intensity 40 81.0 1.9 82.0 2.5 93.0 8.7 20- 95.0 8.2 121.0 2.0 123.0 2.0 136.0 11.8 0 138.0 11.5 20 40 8. 60 a. Br - 0 80 100 120 140 160 180 200 220 m/z Identify the m/z of the base peak and molecular ion. 2 b. Draw structures for each of the following fragments (include electrons and charges): 43.0, 93.0, 95.0, 136.0, and 138.0 m/z. C. Draw a reasonable a-fragmentation mechanism for the fragmentation of the molecular ion to fragment 43.0 m/z. Be sure to include all electrons and formal charges. 6. Using the values provided in Appendix E of your lab manual, calculate the monoisotopic mass for the pyridinium ion (CsH6N) and show your work.arrow_forwardNonearrow_forwardStereochemistry: Three possible answers- diastereomers, enantiomers OH CH₂OH I -c=0 21108 1101 41745 HOR CH₂OH IL Но CH₂OH TIL a. Compounds I and III have this relationship with each other: enantiomers b. Compounds II and IV have this relationship with each other: c. Compounds I and II have this relationship with each other: d. *Draw one structure that is a stereoisomer of II, but neither a diastereomer nor an enantiomer. (more than one correct answer)arrow_forward
- ChemistryChemistryISBN:9781305957404Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCostePublisher:Cengage LearningChemistryChemistryISBN:9781259911156Author:Raymond Chang Dr., Jason Overby ProfessorPublisher:McGraw-Hill EducationPrinciples of Instrumental AnalysisChemistryISBN:9781305577213Author:Douglas A. Skoog, F. James Holler, Stanley R. CrouchPublisher:Cengage Learning
- Organic ChemistryChemistryISBN:9780078021558Author:Janice Gorzynski Smith Dr.Publisher:McGraw-Hill EducationChemistry: Principles and ReactionsChemistryISBN:9781305079373Author:William L. Masterton, Cecile N. HurleyPublisher:Cengage LearningElementary Principles of Chemical Processes, Bind...ChemistryISBN:9781118431221Author:Richard M. Felder, Ronald W. Rousseau, Lisa G. BullardPublisher:WILEY