(a)
Interpretation:
Balanced equation for two examples of precipitation reactions should be given.
Concept Introduction:
If in any reaction formation of solid takes place from the aqueous solution, the reaction is known as precipitation reaction.
(b)
Interpretation:
Balanced equation for two examples of single displacement reactions should be given.
Concept Introduction:
The reaction in which aqueous solution of one substance reacts with aqueous solution of other substance in such a way that one of the ions replaces the ion in other substance is known as a displacement reaction.
(c)
Interpretation:
Balanced equation for two examples of combustion reactions should be given.
Concept Introduction:
Combustion reactions are defined as reaction of compounds with oxygen rapidly producing energy as heat.
(d)
Interpretation:
Balanced equation for two examples of synthesis reactions should be given.
Concept Introduction:
When a given compound is prepared using simpler materials, we call it a synthesis reaction. The reactants may be elements or compounds.
(e)
Interpretation:
Balanced equation for two examples of
Concept Introduction:
Driving force that tends an oxidation-reduction reaction to happen is transfer of electrons between atoms or ions. Atoms or which lose electrons are oxidized and atoms or ions which take up those electrons are reduced.
(f)
Interpretation:
Balanced equation for two examples of Decomposition reactions should be given.
Concept Introduction:
When compounds are broken down to simpler compounds or all the way to its elements, it is called a decomposition reaction.
(g)
Interpretation:
Balanced equation for two examples of acid-base neutralization reactions should be given.
Concept Introduction:
Acid-base neutralization reaction represents the reaction of acid and base to give salt and water. Acid is a substance that gives H+ ion in the aqueous solution and base is a substance that gives hydroxide ion in the aqueous solution. The hydrogen ion from acid and hydroxide ion from base reacts to give water. Similarly, the conjugate base from acid and conjugate acid from base reacts to give salt.
The general acid base reaction is as follows:
The pH of a solution after neutralization reaction is 7.
Want to see the full answer?
Check out a sample textbook solutionChapter 7 Solutions
Bundle: Introductory Chemistry: A Foundation, 8th + OWLv2 6-Months Printed Access Card
- aw the major substitution products you would expect for the reaction shown below. If substitution would not occur at a significant rate under these conditions, check the box underneath the drawing area instead. Be sure you use wedge and dash bonds where necessary, for example to distinguish between major products. Note for advanced students: you can assume that the reaction mixture is heated mildly, somewhat above room temperature, but strong heat or reflux is not used. B C Br HO O Substitution will not occur at a significant rate. Explanation Check + Х Click and drag to start drawing a structure. © 2025 McGraw Hill LLC. All Rights Reserved. Terms of Use | Privacy Center | Accessibarrow_forwardComplete the following reactions with the necessary reagents to complete the shown transformation. Example: 1. 2. ? 3. 018 Br OH Answer: H₂O, H2SO4, HgSO4arrow_forward7:34 • < Question 18 of 22 5G 50% Submit What is the pH of a buffer made from 0.220 mol of HCNO (Ka = 3.5 × 10-4) and 0.410 mol of NaCNO in 2.0 L of solution? 1 2 3 ☑ 4 5 6 C 7 8 | 9 +/- 0 ×10 Tap here for additional resources ||| Гarrow_forward
- 6:46 ✔ 5G 58% < Question 7 of 22 Submit What is the primary species in solution at the halfway point in a titration of NH3 with HBr? A NH3 and H+ B NH₁+ and H+ C NH4+ D NH3 and NH4+ Tap here for additional resources |||arrow_forward6:49 Dji < Question 15 of 22 4G 57% Submit The pOH of a solution is 10.50. What is the OH- concentration in the solution? A 3.2 × 10-4 M B C 3.2 x 10-11 M 10.50 M D 4.2 M E 3.50 M Tap here for additional resources |||arrow_forwardヨ 6:49 Dji < Question 13 of 22 5G 57% Submit The pH of a solution is 2.40. What is the H+ concentration in the solution? A B 2.5 x 10-12 M 4.0 × 10-3 M C 2.40 M D 4.76 M 11.60 M Tap here for additional resources |||arrow_forward
- ヨ C 6:48 Di✔ < Question 12 of 22 5G 57% Submit The pH of a solution is 12.50. What is the H+ concentration in the solution? A 0.032 M B 3.2 × 10-13 M 1.5 M D 9.25 M 12.50 M Tap here for additional resources |||arrow_forwardヨ C 6:48 Di✔ < Question 11 of 22 5G 57% Submit The pH of a solution is 1.50. What is the H+ concentration in the solution? A 0.032 M B 3.2 × 10-13 M 1.5 M D 2.15 M 12.50 M Tap here for additional resources |||arrow_forwardSelect the product of the following reaction. Lon HO Meat ?? CH₂OH OH A D OH OCH B OH of OCH of CH חח E C CHarrow_forward
- Please correct answer and don't used hand raitingarrow_forwardPlease correct answer and don't used hand raitingarrow_forwardUse excel to plot the following titration data. Once you have done your plot, make sure to label the axes correctly. Use your graph to determine the pK, for the weak acid. Attach your plot to the back of this worksheet. A 1.0M solution of weak acid was titrated with a base and the following data was collected. Equivalents of Base pH observed 0.05 3.4 0.15 3.9 0.25 4.2 0.40 4.5 0.60 4.9 0.75 5.2 0.85 5.4 0.95 6.0arrow_forward
- Chemistry & Chemical ReactivityChemistryISBN:9781133949640Author:John C. Kotz, Paul M. Treichel, John Townsend, David TreichelPublisher:Cengage LearningWorld of Chemistry, 3rd editionChemistryISBN:9781133109655Author:Steven S. Zumdahl, Susan L. Zumdahl, Donald J. DeCostePublisher:Brooks / Cole / 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
- Chemistry: The Molecular ScienceChemistryISBN:9781285199047Author:John W. Moore, Conrad L. StanitskiPublisher:Cengage LearningChemistry: Principles and PracticeChemistryISBN:9780534420123Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward MercerPublisher:Cengage LearningChemistry for Engineering StudentsChemistryISBN:9781337398909Author:Lawrence S. Brown, Tom HolmePublisher:Cengage Learning