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Q: Which has the stronger attraction among its submicroscopic particles Potassium at 15 degrees Celsius or bromide at 15 degrees Celsius?
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Which has a stronger attraction among its submicroscopic particles- a solid at 25 degrees Celsius or a gas at 25 degrees Celsius?

In solids the attraction is stronger.


Which has stronger attraction among its submicroscopic particles- a solid at 25 degrees Celsius or a gas at 25 degrees Celsius?

solid


Do forces of attraction have a stronger effect on behavior of the particles in gas or in a liquid?

Forces of attraction have a stronger effect on the behavior of liquid particles.


Is the attraction in particles stronger in liquids then solids?

Forces of attraction have a stronger effect on the behavior of liquid particles.


Is the attraction between steel particles stronger than the attraction between copper particles?

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Which has stronger attractions among its submicroscopic particles a solid at 25 degrees Celsius or a gas at 25 degrees Celsius?

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Which has stronger attractions among its submicroscopic particles a solid at 25 degrees Celsius or a gas 25 degrees Celsius?

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Which has stronger attractions among its submicroscopic particles a solid at 25 degrees C or a gas at 25 degrees C?

A solid has stronger attractions than a gas, assuming all else (including temperature) is equal. If the gas had stronger attractions, its particles would be in contact with each other.


Do forces of attraction have a stronger effect on the behavior of the particles in a gas or liquid?

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Do forces attraction have a stronger effect on the behavior of the particles in a gas or in a liquid?

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If particles in liquid a has a stronger attraction than particles in liquid b if both liquids are at the same tempureture which liquid has a higher viscosity?

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Can you explain what happens to the particles of potassium chloride when they dissolve in the water?

when particles of KCl are put in water, they dissolve because KCl being a polar ionic compound, its ions separate and in aqueous solutions, water molecules surround these ions with the partially positive hydrogen ions closer to the chloride ions and the partially negative oxide ion towards the potassium ion but the electron cloud is bigger on the side of the chloride ion since it's more electronegative and the attraction between the hydrogen and the chlorine and between oxygen and potassium becomes stronger than that between potassium and chlorine hence the two ions [potassium and chloride] are pulled apart forming ions in the solution