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Que Complete the following acid-base reactions with balanced molecular, total ionic, and net ionic equations:

(a) Potassium hydroxide(aq) + hydrobromic acid(aq)

(b) Ammonia(aq) + hydrochloric acid(aq)

Short Answer

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Answer

The acid-base reactions with a balanced molecular equation is:

(a) KOHaq+HBraqKBraq+H2OI

(b) NH3aq+HCIaqNH4CIaq

Step by step solution

01

Determine different types of equations to represent aqueous ionic reactions

The molecular equation reveals the least about the species in solution and is actually somewhat misleading because it shows all the reactants and products as if they were intact undissociated compounds.

The total ionic equation is a much more accurate representation of the reaction because it shows all the soluble ionic substances dissociated into ions.

The net ionic equation is the most useful because it omits the spectator ions and shows the actual chemical change taking place.

02

Write the net ionic equation of the reaction between potassium hydroxide and hydrobromic acid

(a)Balanced molecular reaction:

KOHaq+HBraqKBraq+H2OI

Total ionic reaction:

K+aq+OH-aq+H+aq+Br-aq+Br-aq+H2OI

Net ionic reaction:

H+aq+OH-aqH2O

03

Write the net ionic equation of the reaction between ammonia and hydrochloric acid

b) Balanced molecular reaction:

NH3aq+HCIaqNH4CIaq

Total ionic reaction:

NH3aq+H+aq+CI-aqNH4CIaq

Net ionic reaction:

NH3aq+H+aqNH+4aq

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Most popular questions from this chapter

Is the following a redox reaction? Explain

NH3(aq)+HCl(aq)NH4Cl(aq)

Calcium dihydrogen phosphate, Ca(H2PO4)2, and sodium hydrogen carbonate, NaHCO3, are ingredients of baking powder that react with each other to produce CO2, which causes dough or batter to rise:

Ca(H2PO4)2(s)+NaHCO3(s)CO2(g)+H2O(g)+CaHPO4(s)+Na2HPO4(s)

[unbalanced]

If the baking powder contains 31% NaHCO3and 35% Ca(H2PO4)2 by mass:

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The mass percent of Cl- in a seawater sample is determined by titrating 25.00 mL of seawater with AgNO3 solution, causing a precipitation reaction. An indicator is used to detect the endpoint, which occurs when a freeAg+ ion is present in the solution after all theCl- has reacted. If 53.63 mL of 0.2970 MAgNO3 is required to reach the endpoint, what is the mass percent of Cl- in the seawater (d of seawater = 1.024 g/mL)?

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