QUESTION IMAGE
Question
- which one of these is not a way to form crystals?
- cooling a liquid from a melt
- forming a precipitate from a chemical reaction
- warming a solid until it melts
- cooling or evaporating a solution
- how did the monoclinic sulfur crystals grow?
- cooling a liquid from a melt
- forming a precipitate from a chemical reaction
- warming a solid until it melts
- cooling or evaporating a solution
- what was the solute in the single, blue crystals you grew?
- copper sulfate
- borax
- gypsum
- sugar
Question 43
To determine which is not a way to form crystals, we analyze each option:
- Cooling a liquid from a melt: This can form crystals (e.g., freezing water to ice or forming minerals from magma).
- Forming a precipitate from a chemical reaction: Precipitates can be crystalline (e.g., silver chloride precipitate).
- Warming a solid until it melts: Melting a solid is the reverse of forming crystals; it breaks the crystal structure, so this is not a way to form crystals.
- Cooling or evaporating a solution: Evaporation (e.g., salt from seawater) or cooling (e.g., sugar crystals from syrup) can form crystals.
Monoclinic sulfur crystals grow by cooling a liquid from a melt. When sulfur is melted and then cooled, the liquid sulfur (from the melt) can crystallize into monoclinic sulfur.
- Forming a precipitate from a chemical reaction: Not the method for monoclinic sulfur growth.
- Warming a solid until it melts: This is melting, not crystal growth.
- Cooling or evaporating a solution: Monoclinic sulfur isn't typically grown this way (it's from melt cooling).
Copper sulfate forms blue crystals. Borax crystals are usually white/colorless, gypsum is white/colorless, and sugar crystals are white. So the solute in the single, blue crystals grown is copper sulfate.
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The option "warming a solid until it melts" is not a way to form crystals. So the correct option is the one with "warming a solid until it melts".