Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain...

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Heat of Solution

Transcript of Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain...

Page 1: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

Heat of Solution

Page 2: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

Heat of Solution• A dissolving reaction is either endothermic or exothermic!

• If there is a net gain of heat from the solvent by the solute, then the overall process is endothermic.

• If there is a net release of heat from the solute to the solvent, then the overall process is exothermic.

• Dissolving is described from the “point of view” of the solute.

• If the reaction is endothermic, then the solute will absorb heat from the solvent and the solvent’s temperature will decrease.

• If the reaction is exothermic, then the solute will release heat to the solvent and the solvent’s temperature will increase.

Page 3: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

?thermic Dissolving Reaction

Heat of Solution

Page 4: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

Heat of Solution?thermic Dissolving Reaction

Page 5: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

Heat of Solution?thermic Dissolving Reaction

Page 6: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

Heat of Solution?thermic Dissolving Reaction

Page 7: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

Heat of Solution?thermic Dissolving Reaction

Page 8: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

Heat of Solution?thermic Dissolving Reaction

Page 9: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

Heat of Solution?thermic Dissolving Reaction

Page 10: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

Heat of Solution?thermic Dissolving Reaction

If the solute absorbs heat from the solvent then the solvent’s temperature will decrease.

Endothemic

So is the reaction endothermic or exothermic?

Page 11: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

?thermic Dissolving Reaction

Heat of Solution

Page 12: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

?thermic Dissolving Reaction

Heat of Solution

Page 13: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

?thermic Dissolving Reaction

Heat of Solution

Page 14: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

?thermic Dissolving Reaction

Heat of Solution

Page 15: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

?thermic Dissolving Reaction

Heat of Solution

Page 16: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

?thermic Dissolving Reaction

Heat of Solution

Page 17: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

?thermic Dissolving Reaction

Heat of Solution

Page 18: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

?thermic Dissolving Reaction

If the solute releases heat to the solvent then the

solvent’s temperature will increase.

Heat of SolutionExothermic

So is the reaction endothermic or exothermic?

Page 19: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

Heat of Solution• MOST dissolving reactions of solids in water are

ENDOTHERMIC.

• HOWEVER, the dissolving of most acids, bases, and gases in water is an EXOTHERMIC reaction!

• This means that when an acid is dissolved in water, the temperature of the water increases.

• This means that when a base is dissolved in water, the temperature of the water increases.

• This means that when a gas is dissolved in water, the temperature of the water increases.

• When carbon dioxide is pumped into water to make soda, the temperature of the water increases.

Page 20: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

Heat of Solution

• Diluting concentrated acids with water can be dangerous because the dissolving reaction if often VERY exothermic. If water is added to concentrated acid, acid steam can be produced and released up toward you face.

• DO AS YOU "OTTER" (OUGHT TO) ADD ACID TO "WOTTER" (WATER)!

acid

Acid steam!

Page 21: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

Heat of Solution• A practical use of heat of solution is the “break and shake”

hot or cold pack!

Page 22: Heat of Solution. A dissolving reaction is either endothermic or exothermic! If there is a net gain of heat from the solvent by the solute, then the overall.

Heat of SolutionEx.1) The dissolving of a gas in water is usually

____thermic.

Ex.2) When a substance dissolves in water endothermically, the water’s temperature will ___________.

Ex.3) Heat is __________ by a cold pack which means that the reaction going on inside is _____thermic.

Ex.4) Which of the following substances could be used to make a “break and shake” COLD pack?(1) KNO3 (3) LiBr (2) NaOH (4) HCl

Ex.5) Which substance on Table I would make the best “break and shake” HOT pack? _______

exo

endoabsorbed

decrease

LiBr