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MariettaO [177]
3 years ago
3

Which event represents a chemical change?

Chemistry
1 answer:
pashok25 [27]3 years ago
6 0
1 The first one would be using word/chemical equations, as you mentioned. However, with state symbols.

For example,
NaOH(aq) + HCL(aq) ---> NaCl(aq) + H2O(l)

Aqueuos Sodium hydroxide + Dilute Hydrochloric Acid ---> Aqueuos Sodium Chloride + Water

#2 The second one would be an experiment. You can try this simple experiment:

1. Pour a few drops of aqueous sodium hydroxide to 2cm^3 of aqueous iron(ll) nitrate.
2. A green precipitate would form.

That represents the chemical reaction between aqueous iron(ll) nitrate and aqueous sodium hydroxide to form iron(ll) hydroxide.
You can use diagrams to show the experiment procedure.

Well i've run out of ideas because the things i listed is what i have learnt so far. I hope that i helped in a way or another. Good luck! (:
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3 years ago
A buffer solution contains 0.345 M acetic acid and 0.377 M sodium acetate . If 0.0613 moles of potassium hydroxide are added to
melamori03 [73]

Answer:

pH = 5.54

Explanation:

The pH of a buffer solution is given by the <em>Henderson-Hasselbach (H-H) equation</em>:

  • pH = pKa + log\frac{[CH_3COO^-]}{[CH_3COOH]}

For acetic acid, pKa = 4.75.

We <u>calculate the original number of moles for acetic acid and acetate</u>, using the <em>given concentrations and volume</em>:

  • CH₃COO⁻ ⇒ 0.377 M * 0.250 L = 0.0942 mol CH₃COO⁻
  • CH₃COOH ⇒ 0.345 M * 0.250 L = 0.0862 mol CH₃COOH

The number of CH₃COO⁻ moles will increase with the added moles of KOH while the number of CH₃COOH moles will decrease by the same amount.

Now we use the H-H equation to <u>calculate the new pH</u>, by using the <em>new concentrations</em>:

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6 0
3 years ago
A solution contains 0.115 mol h2o and an unknown number of moles of nacl. the vapor pressure of the solution at 30°c is 25.7 tor
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According to Raoult's low:
We will use this formula: Vp(Solution) = mole fraction of solvent * Vp(solvent)
∴ mole fraction of solvent = Vp(Solu) / Vp (Solv)
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when we assume the moles of solute NaCl = X 
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mole fraction of solvent = moles of solvent / (moles of solvent + moles of solute)
by substitute:
∴ 0.808 = 0.115 / (0.115 + X)
 So X (the no.of moles of NaCl) = 0.027 m
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hichkok12 [17]
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