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marysya [2.9K]
2 years ago
5

What solution does ?

Chemistry
2 answers:
Nuetrik [128]2 years ago
4 0
Unsaturated solution allow more solute to dissolve.
Ainat [17]2 years ago
3 0
Unsaturated would be the correct answer.
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What type of energy is close to the flow of electrons?
dimaraw [331]

electrical energy

Explanation:

electrical energy is caused by moving partial that have a negative or positive charge these purses are called electron current electricity is electrical energy that flows from one place to another usually through a wire electricity is a type of energy that comes from an electrical energy

7 0
4 years ago
Write the scientific term.
Reil [10]

Answer:  Solubility.

Explanation:

Solubility is defined as the maximum amount of solute dissolved per 100 g of the solvent at a certain fixed temperature to form a saturated solution.

STP condition is Standard Temperature and Pressure condition which is  temperature of 273 K and pressure of 1 atm.

Thus the scientific term for "the number of grams of solute dissolved in 100 g of the solvent to form a saturated solution at STP​" is called as Solubility.

6 0
3 years ago
Describe the composition of the nucleus of an atom.
Vlada [557]

the answer is b it is composed of protons and neutrons.

hope this helped

3 0
3 years ago
A gas occupies 12.3 liters at a temperature of 40 K. What is the volume when the temperture is increased to 60 K?
Arte-miy333 [17]

Answer:

The answer to your question is  V2 = 18.45 l

Explanation:

Data

Volume 1 = V1 = 12.3 l

Temperature 1 = T1 = 40°K

Volume 2 = V2 = ?

Temperature 2 = T2 = 60°K

Process

To solve this problem use Charles' law

              V1/T1 = V2/T2

-Solve for V2

              V2 = V1T2 / T1

-Substitution

              V2 = (12.3 x 60) / 40

-Simplification

              V2 = 738 / 40

-Result

               V2 = 18.45 l

5 0
3 years ago
If 5.60 mol of a substance releases 14.9 kJ when it decomposes, what is ΔH for the process in terms of kJ/mol of reactant?
lisov135 [29]

Answer:

The correct approach is "-2.67 kJ/mole". A further solution is described below.

Explanation:

The given values are:

No. of moles,

= 5.60 mol

Substance releases,

ΔH = 14.9 kJ

Now,

The ΔH in terms of kJ/mol will be:

= \frac{\Delta H}{5.60}

On putting the given values of ΔH, we get

= \frac{-14.9}{5.60}

= -2.67 \ kJ/mole

8 0
3 years ago
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