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andrey2020 [161]
3 years ago
11

Explain the difference between an ideal and a nonideal solution.

Chemistry
1 answer:
adell [148]3 years ago
3 0

Answer:

The difference between an ideal and a nonideal solution is given below:-

Explanation:

Ideal Solution:  

  • The ideal solution is a method where the relationships of all the molecules in the mixture are similar.
  • Upon combining it with a solvent, the distance between the solute molecules does not increase. It is because for increasing the distance, there should also be a force that acts on everyone and every molecule of the solute mixture.

Non-ideal Solution:  

  • The non-ideal aqueous solution that has distinctions in the system provides particles of different sizes of different components.
  • The power of the molecular interactions can be identified as a non-ideal solution.
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True or False? If friction didn’t exist, an object in motion would stay in motion forever.
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Answer:

True

Explanation:

Friction is defined as the force that opposes motion when an object is sliding over a surface.

As a result of friction, all objects moving over a surface eventually come to rest over time.If we were to successfully create a friction-less surface, an object will remain in motion forever because it will encounter no opposition to its motion.

Hence, the resistance to the motion of objects over  a surface which causes the objects to come to a halt after moving over the surface for some time is called friction.

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What is the volume of 10 paper clips in ml
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Answer:

10.000

Explanation:

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As the amount of salt in water increases, the___________ of the water increases.
Gnom [1K]

Answer:

3

Explanation:

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7.0 mol Mn reacts with 5.0 mol
Elenna [48]

The moles of MnO formed with the reaction of 5 moles of Mn is 3 moles.

<h3>What is a limiting reagent?</h3><h3 />

In a chemical reaction, the reagent that is present in a lesser quantity and governs the rate of the reaction is termed as the limiting reagent.

In the reaction of the formation of MnO, according to the stoichiometric law 2 moles of Mn reacts with 1 moles of Oxygen.

Thus, the moles of oxygen consumed by 7 moles of Mn is:

2 moles Mn = 1 mole O₂

7 moles Mn = 3.5 moles O₂

The available moles of O₂ = 5 mol.

The remaining moles of O₂ = 5-3.5 moles

The remaining moles of O₂ = 1.5 moles

The reaction of 5 moles Mn requires 2.5 moles of O₂, whereas the available moles of oxygen is 1.5 moles. Thus, oxygen serves as the limiting reagent.

The moles of MnO formed with the reaction of 5 moles Mn and 1.5 moles O₂

1 mole O₂ = 2 moles MnO

1.5 moles O₂ = 2 * 1.5 moles MnO

1.5 moles O₂ = 3 moles MnO

Thus, the moles of MnO formed with the reaction of 5 moles of Mn with the available oxygen is 3 moles.

Learn more about stoichiometric law, here:

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Heating up a reaction does which of the following:
Svetradugi [14.3K]

Heating up a reaction does increase the number of collision only.

Hence, Option C is correct answer.

<h3>What is Collision Theory ?  </h3>

According to the collision theory, the reaction take place when the collision occur and molecules having sufficient energy or threshold energy for collision.

The collision of molecules depend on the kinetic energy of molecules. Greater the kinetic energy greater the number of molecules collide. Lesser the kinetic energy lesser will be collision.

<h3>How temperature affect the collision theory ?</h3>

With an increase in temperature, there is an increase in energy that can be converted into activation energy in a collision, and that will increase the reaction rate. A decrease in temperature would have the opposite effect. With an increase in temperature, there is an increase in the number of collision.

Thus from the above conclusion we can say that Heating up a reaction does increase the number of collision only.

Hence, Option C is correct answer.

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