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ss7ja [257]
2 years ago
15

Carbonic acid reacts with water to yield bicarbonate ions and hydronium ions: h2co3+h2o⇌hco3−+h3o+ identify the conjugate acid-b

ase pairs. drag each item to the appropriate bin. view available hint(s) resethelp
Chemistry
2 answers:
Alisiya [41]2 years ago
5 0
Balanced chemical reaction: H₂CO₃(aq) + H₂O(l) → HCO₃⁻(aq) + H₃O⁺(aq).
According to  Bronsted-Lowry theory acid are donor of protons and bases are acceptors of protons (the hydrogen cation or H⁺).
Carbonic acid (H₂CO₃) is Bronsted acid and it can give proton and become conjugate base hydrogencarbonate (HCO₃⁻<span>), water is base and hydronium ion is conjugate acid (H</span>₃O⁺).

Nataliya [291]2 years ago
5 0

For the equilibrium that you simply have written ...

H2CO3 + H2O <==> HCO3- + H3O +

acid base conjugate base conjugate acid

<h2>Further explanation </h2>

We know that carbonic acid gas reacts with water to create "carbonic acid." However, what we actually call as the acid isn't the weak acid H2CO3; H2CO3 doesn't even exist in solution. What really we call as the acid is just CO2 dissolved in water which is in equilibrium with small amounts of H + and HCO3-. HCO3 ^ - is that the intermediate substance between CO2 and CO3 ^ 2-. By adding OH- to HCO3 ^ - we produce CO3 ^ 2-. Adding H + to HCO3 produces CO2.

CO2 (aq) + H2O (l) <==> H + + HCO3 ^ - acid midrange pH values

HCO3 ^ - + OH- <==> CO3 ^ 2- + H2O (l) formation of carbonate ion basic

HCO3 ^ - + H + <==> CO2 (g) + H2O (l) formation of carbonic acid acidic gas

Acid: H2CO3

Conjugate Base: HCO3-

Base: H2O

Conjugate Acid: H3O +

Carbon dioxide is produced by all animals, plants, fungi, and microorganisms in the process of respiration and is used by plants in the process of photosynthesis. Therefore, carbon dioxide is an important component of the carbon cycle. Carbon dioxide is also produced from the byproduct of burning fossil fuels. Inorganic carbon dioxide is released from volcanoes and other geothermal processes such as hot springs.

Learn more

Carbon dioxide  brainly.com/question/6815797

carbonic acid  brainly.com/question/10278482

Details

Grade: College

Subject: Chemistry

Keyword: carbon dioxide, carbonic, acid

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Calculate the amount of heat necessary to raise the temperature of 135.0 g of water from 50.4°F to 85.0°F. The specific heat of
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Here we have to calculate the heat required to raise the temperature of water from 85.0 ⁰F to 50.4 ⁰F.

10.857 kJ heat will be needed to raise the temperature from 50.4 ⁰F to 85.0 ⁰F

The amount of heat required to raise the temperature can be obtained from the equation H = m×s×(t₂-t₁).

Where H = Heat, s  =specific gravity = 4.184 J/g.⁰C, m = mass = 135.0 g, t₁ (initial temperature) = 50.4 ⁰F or 10.222 ⁰C and t₂ (final temperature) = 85.0⁰F or 29.444 ⁰C.

On plugging the values we get:

H = 135.0 g × 4.184 J/g.⁰C×(29.444 - 10.222) ⁰C

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2 years ago
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When the element in group 1 are considered in order from top to bottom, each successive Elmer at standard pressure has a lower melting point and a lower boiling point.
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Given these reactions, where X represents a generic metal or metalloid 1) H2(g)+12O2(g)⟶H2O(g)ΔH1=−241.8 kJ 1) H2(g)+12O2(g)⟶H2O
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Answer:

ΔH = -793,6 kJ

Explanation:

It is possible to obtain ΔH of this reaction using Hess's law that says you can sum the half-reactions ΔH to obtain the ΔH of the global reaction:

If half-reactions are:

1) H₂(g) + ¹/₂O₂(g) ⟶ H₂O(g) ΔH₁ = −241.8 kJ

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4) X(s) + O₂(g) ⟶ XO₂(s) ΔH₄ = −639.1 kJ

5) H₂O(g) ⟶ H₂O(l) ΔH₅ = −44.0 kJ

The sum of (4) + 4×(3) - (2) - 2×(1) - 2×(5) is:

(4) X(s) + O₂(g) ⟶ XO₂(s) ΔH = −639.1 kJ

+4×(3) 2H₂(g) + 2Cl₂(g) ⟶ 4HCl(g) ΔH = −369,2 kJ

-(2) XCl₄(s) ⟶ X(s) + 2Cl₂(g) ΔH = -356,9 kJ

-2×(1) 2H₂O(g) ⟶ 2H₂(g) + O₂(g) ΔH = +483,6 kJ

-2×(5) 2H₂O(l) ⟶ 2H₂O(g) ΔH = +88.0 kJ

= <em>XCl₄(s) + 2H₂O(l) ⟶ XO₂(s) + 4HCl(g)</em>

Where ΔH is:

ΔH = -639,1 kJ -369,2 kJ -356,9 kJ +483,6 kJ +88,0 kJ

<em>ΔH = -793,6 kJ</em>

I hope it helps!

5 0
2 years ago
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5 0
1 year ago
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