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Yanka [14]
3 years ago
11

Why particles start vibrating in solids?it's argent​

Chemistry
2 answers:
spin [16.1K]3 years ago
7 0
Because the molecules or particle in the solids are compactly packed due to which they can't move here and there so instead of this they vibrate
ehidna [41]3 years ago
7 0

Explanation:

The particles of matter are continuously in motion due to which tehy collide with each other, and this creates a vibration in the solids

I hope it is correct ☺️

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It is basically the function of evaporation.
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An electron has an uncertainty in its position of 513 pm. What is the uncertainty in its velocity?
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The answers are in the picture. this us the question, An increase in carbon dioxide production has led to an increase in global
Llana [10]

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3 years ago
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What is the final pH of a solution with an initial concentration of 2.5mM Ascorbic acid (H2C6H6O6) which has the following Kas:
riadik2000 [5.3K]

Answer:

pH = 3.39

Explanation:

The equilibrium in water of ascorbic acid (With its conjugate base) is:

H₂C₆H₆O₆(aq) + H₂O(l) ⇄ HC₆H₆O₆⁻(aq) + H₃O⁺(aq)

<em>Where the acidic dissociation constant is written as:</em>

Ka = 7.9x10⁻⁵ = [HC₆H₆O₆⁻] [H₃O⁺] / [H₂C₆H₆O₆]

H₂O is not taken in the Ka expression because is a pure liquid.

As initial concentration of H₂C₆H₆O₆ is 2.5x10⁻³M, the equilibrium concentration of each species in the equilibrium is:

[H₂C₆H₆O₆] = 2.5x10⁻³M - X

[HC₆H₆O₆⁻] = X

[H₃O⁺] = X

Replacing in the Ka expression:

7.9x10⁻⁵ = [X] [X] / [2.5x10⁻³M - X]

1.975x10⁻⁷ - 7.9x10⁻⁵X = X²

<em>0 = X² + 7.9x10⁻⁵X - 1.975x10⁻⁷</em>

Solving for X:

X = -0.00048566→  False solution, there is no negative concentrations

X = 0.00040666 → Right solution

As [H₃O⁺] = X, [H₃O⁺] = 0.00040666

pH is defined as -log [H₃O⁺];

pH = -log 0.00040666,

<h3>pH = 3.39</h3>
5 0
3 years ago
Using Le Châtelier’s Principle, explain why people suffering from carbon monoxide poisoning are given pure oxygen to breathe in
Bas_tet [7]

Answer:

See explanation

Explanation:

Carbon monoxide is toxic because it can successfully competes with oxygen for hemoglobin (Hb) sites according to the following equilibrium:

Hb(O₂)₄(aq) + 4CO(g) ⇄ Hb(CO)₄(aq) + 4O₂(g)

Based on LeChatelier’s Principle, CO poisoning can be reversed by applying O₂(g) to victim. This addition of O₂(g) increases system concentration of O₂(g) in the equilibrium reaction thereby overloading the product side of the equilibrium forcing it to shift to the left, decomposing the  carboxyhemoglobin (Hb(CO)₄) and releasing the CO(g) and combining with O₂(g) to form more Hb(O₂)₄.  

7 0
3 years ago
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