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cluponka [151]
3 years ago
7

Which of the following factors decreases the rate of solubility?

Chemistry
2 answers:
belka [17]3 years ago
5 0

Answer:- C. decrease in temperature.

Explanations:- Solubility of a solid increases if the pressure is increased as the high pressure helps the solid to get dissolved in the solvent.

If the surface area of the solute is increased then more and more solute comes into the contact of the solvent and the solubility increases.

If the stirring is increased then it also helps the solute to get dissolved into the solvent.

Solubility of solids is directly proportional to the temperature.

So, if the temperature is decreased then solubility of the solute is also decreased.

CaHeK987 [17]3 years ago
3 0
Answer is going to C
<span>C. decrease in temperature</span>
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A GFCI is an example of what kind of electrical safety device?
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Circuit breaker.

Explanation:

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An object has a density of 1.75 g/mL. Will it float on water? Why?
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The object will not float in water because the density of the object is greater than that of water.

Explanation:

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4 0
4 years ago
Oxygen atoms have six outer electrons<br><br> Write the symbol for an oxide ion.
Shkiper50 [21]

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O^{2-} is the symbol for an oxide ion

7 0
4 years ago
Explain how you could use the solubility of a substance to make a saturated solution.
Ray Of Light [21]

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Add solute to liquid until dissolving stops.

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3 0
3 years ago
2CuO+2NH3------ 3Cu + 3H2O+ N2. Given that the relative molecular mass of copper oxide is 80, what volume of ammonia is required
Pani-rosa [81]

Volume of Ammonia(NH₃) = 22.4 L

<h3>Further explanation</h3>

Given

Reaction

3CuO+2NH₃⇒ 3Cu + 3H₂O+ N₂

<em>In the problem, the CuO coefficient should be 3 not 2</em>

M CuO = 80

mass CuO = 120 g

Required

The volume of NH₃

Solution

mol CuO :

\tt mol=\dfrac{mass}{M}\\\\mol=\frac{120}{80}\\\\mol=1.5

From the equation, mol ratio CuO : NH₃ = 3 : 2, so mol NH₃=

\tt \dfrac{2}{3}\times 1.5=1~mol

Assume at STP(0 °C, 1 atm) ⇒1 mol = 22.4 L, then volume of NH₃=22.4 L

4 0
3 years ago
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