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Question 1 (2points) Why does crushing a solute into smaller pieces increase the rate at which it dissolves in a solvent? All of these It increases the surface area, allowing more particles of solute to come in contact with the solvent. e It increases the kinetic energy of the solvent. d None of these It increases magnetic attraction It makes particles of solvent move more quickly contacting solute particles more often.

Problemas

Question 1 (2points)
Why does crushing a solute into smaller pieces increase the rate at which it dissolves in a solvent?
All of these
It increases the surface area, allowing more particles of solute to come in contact with the solvent.
e It increases the kinetic energy of the solvent.
d None of these
It increases magnetic attraction
It makes particles of solvent move more quickly contacting solute particles more often.

Question 1 (2points) Why does crushing a solute into smaller pieces increase the rate at which it dissolves in a solvent? All of these It increases the surface area, allowing more particles of solute to come in contact with the solvent. e It increases the kinetic energy of the solvent. d None of these It increases magnetic attraction It makes particles of solvent move more quickly contacting solute particles more often.

Solución

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Camilaélite · Tutor durante 8 años
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'It increases the surface area, allowing more particles of solute to come in contact with the solvent.'

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## Step 1<br />The rate at which a solute dissolves in a solvent is influenced by several factors. One of these factors is the surface area of the solute. <br /><br />## Step 2<br />When a solute is crushed into smaller pieces, the surface area of the solute increases. This is because there are more particles exposed to the solvent.<br /><br />## Step 3<br />With an increased surface area, more particles of the solute come into contact with the solvent. This increases the rate at which the solute dissolves in the solvent.<br /><br />## Step 4<br />The other options provided, such as increasing the kinetic energy of the solvent, increasing magnetic attraction, or making particles of the solvent move more quickly, do not directly contribute to the rate of dissolution of the solute.
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