
(a)
Interpretation:
The equation has to be balanced and the type of reaction has to be given.
The given equation is,
Concept Introduction:
Combination reactions/Synthesis reactions: In these reactions, the reactant combines to form a single product. This type of reaction occurs between either two elements, an element and a compound or two compounds. It is recognized easily because it involves two reactants and only a single product.
Example: The product for the combination reaction of magnesium oxide and carbon dioxide is magnesium carbonate. The completed equation is,
Single displacement reactions: A reaction where an element in a compound is replaced by another element is called single displacement reaction or a substitution reaction. It generally involves between a dilute solution of an acid and a metal.
Example: The product for the single displacement reaction of reaction of zinc and hydrogen bromide is zinc bromide and hydrogen. The balanced reaction is,
Double displacement reactions: This type of reactions occurs when the cation and the anions switch between two reactants to form new products. In order for the reaction to occur, one of the products is usually a solid precipitate, a gas or a molecular compound.
Example: The product of the reaction between nitric acid and calcium sulphide is gaseous hydrogen sulphide and calcium nitrate. The completed equation is,
Decomposition reactions: Decomposition reactions are the opposite of a combination reaction because decomposition reaction involves the breaking apart of a substance into simpler substances. Such a reaction is easy to recognize because there is one reactant and more than one product.
Example: The reaction of sodium chlorate to sodium chloride and oxygen is decomposition reaction. The balanced reaction is,
(a)

Answer to Problem 3PE
The balanced equation is
The reaction between hydrogen and oxygen to form water is synthesis reaction.
Explanation of Solution
Hydrogen reacts with oxygen to form water. This reaction is an example of synthesis (or) combination reaction because two reactants form a single product. The
The above reaction is unbalanced. The balanced equation is
(b)
Interpretation:
The equation has to be balanced and the type of reaction has to be given.
The given equation is,
Concept Introduction:
Refer to part (a).
(b)

Answer to Problem 3PE
The balanced equation is,
The reaction of hydrazine to give ammonia gas and nitrogen gas is a decomposition reaction.
Explanation of Solution
The reaction of hydrazine to give ammonia gas and nitrogen gas is a decomposition reaction because a single reactant gives more than one product. The chemical equation is,
The above reaction is unbalanced. The balanced equation is,
(c)
Interpretation:
The equation has to be balanced and the type of reaction has to be given.
The given equation is,
Concept Introduction:
Refer to part (a).
(c)

Answer to Problem 3PE
The balanced equation is,
The reaction of sulfuric acid with sodium hydroxide to give water and sodium sulfate is a double displacement reaction.
Explanation of Solution
The reaction of sulfuric acid with sodium hydroxide to give water and sodium sulfate is a double displacement reaction because the two cations are interchange to give products. The chemical equation is,
The above reaction is unbalanced. The balanced equation is,
(d)
Interpretation:
The equation has to be balanced and the type of reaction has to be given.
The given equation is,
Concept Introduction:
Refer to part (a).
(d)

Answer to Problem 3PE
The balanced equation is,
The reaction of aluminum carbonate to give aluminum oxide and carbon dioxide is a decomposition reaction.
Explanation of Solution
The reaction of aluminum carbonate to give aluminum oxide and carbon dioxide is a decomposition reaction because a single reactant gives more than one product. The chemical equation is,
The above reaction is unbalanced. The balanced equation is,
(e)
Interpretation:
The equation has to be balanced and the type of reaction has to be given.
The given equation is,
Concept Introduction:
Refer to part (a).
(e)

Answer to Problem 3PE
The balanced equation is,
The reaction of ammonium iodide with chlorine to give ammonium chloride with evolution of iodine is a single displacement reaction.
Explanation of Solution
The reaction of ammonium iodide with chlorine to give ammonium chloride with evolution of iodine is a single displacement reaction because according to the activity series, chlorine is more reactive than iodine, therefore it will displace iodine from ammonium iodide. The chemical reaction is,
The above reaction is unbalanced. The balanced equation is,
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Chapter 8 Solutions
EBK FOUNDATIONS OF COLLEGE CHEMISTRY
- For each reaction below, decide if the first stable organic product that forms in solution will create a new CC bond, and check the appropriate box. Next, for each reaction to which you answered "Yes" to in the table, draw this product in the drawing area below. Note for advanced students: for this problem, don't worry if you think this product will continue to react under the current conditions - just focus on the first stable product you expect to form in solution. དྲ。 ✗MgBr ? O CI Will the first product that forms in this reaction create a new C-C bond? Yes No • ? Will the first product that forms in this reaction create a new CC bond? Yes No × : ☐ Xarrow_forwardPredict the major products of this organic reaction: OH NaBH4 H ? CH3OH Note: be sure you use dash and wedge bonds when necessary, for example to distinguish between major products with different stereochemistry. Click and drag to start drawing a structure. ☐ : Sarrow_forwardPredict the major products of this organic reaction: 1. LIAIHA 2. H₂O ? Note: be sure you use dash and wedge bonds when necessary, for example to distinguish between major products with different stereochemistry. Click and drag to start drawing a structure. X : ☐arrow_forward
- For each reaction below, decide if the first stable organic product that forms in solution will create a new C - C bond, and check the appropriate box. Next, for each reaction to which you answered "Yes" to in the table, draw this product in the drawing area below. Note for advanced students: for this problem, don't worry if you think this product will continue to react under the current conditions - just focus on the first stable product you expect to form in solution. NH2 tu ? ? OH Will the first product that forms in this reaction create a new CC bond? Yes No Will the first product that forms in this reaction create a new CC bond? Yes No C $ ©arrow_forwardAs the lead product manager at OrganometALEKS Industries, you are trying to decide if the following reaction will make a molecule with a new C-C bond as its major product: 1. MgCl ? 2. H₂O* If this reaction will work, draw the major organic product or products you would expect in the drawing area below. If there's more than one major product, you can draw them in any arrangement you like. Be sure you use wedge and dash bonds if necessary, for example to distinguish between major products with different stereochemistry. If the major products of this reaction won't have a new CC bond, just check the box under the drawing area and leave it blank. Click and drag to start drawing a structure. This reaction will not make a product with a new CC bond. G marrow_forwardIncluding activity coefficients, find [Hg22+] in saturated Hg2Br2 in 0.00100 M NH4 Ksp Hg2Br2 = 5.6×10-23.arrow_forward
- give example for the following(by equation) a. Converting a water insoluble compound to a soluble one. b. Diazotization reaction form diazonium salt c. coupling reaction of a diazonium salt d. indacator properties of MO e. Diazotization ( diazonium salt of bromobenzene)arrow_forward2-Propanone and ethyllithium are mixed and subsequently acid hydrolyzed. Draw and name the structures of the products.arrow_forward(Methanesulfinyl)methane is reacted with NaH, and then with acetophenone. Draw and name the structures of the products.arrow_forward
- 3-Oxo-butanenitrile and (E)-2-butenal are mixed with sodium ethoxide in ethanol. Draw and name the structures of the products.arrow_forwardWhat is the reason of the following(use equations if possible) a.) In MO preperation through diazotization: Addition of sodium nitrite in acidfied solution in order to form diazonium salt b.) in MO experiment: addition of sodium hydroxide solution in the last step to isolate the product MO. What is the color of MO at low pH c.) In MO experiment: addition of sodium hydroxide solution in the last step to isolate the product MO. What is the color of MO at pH 4.5 d.) Avoiding not cooling down the reaction mixture when preparing the diazonium salt e.) Cbvcarrow_forwardA 0.552-g sample of an unknown acid was dissolved in water to a total volume of 20.0 mL. This sample was titrated with 0.1103 M KOH. The equivalence point occurred at 29.42 mL base added. The pH of the solution at 10.0 mL base added was 3.72. Determine the molar mass of the acid. Determine the Ka of the acid.arrow_forward
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