One way to think about it is that it "gets in the way" of forming a regular crystalline lattice and so makes it "more difficult" for water to freeze, with the net result that the freezing point drops.
Yes, adding salt to ice lowers its temperature because salt disrupts the normal freezing process of water, causing the ice to melt at a lower temperature.
Yes, drinking water does boil at a lower temperature than salt water.
lower
Water evaporates at a MUCH lower temperature than salt.
Salt lowers the freezing point of ice, causing it to melt at a lower temperature. This results in a decrease in the temperature of the ice.
salt doesn't change the temperature of water, it changes the freezing point. salt lowers the freezing point of water so that it will become ice at a lower temperature, therefor melt at a lower temperature which is why salt is put on the roads when it is icy
The freezing point of that salt solution will get even lower in temperature
Salt will dissolve in water. Adding salt will lower the temperature of water by a few degrees Celsius as well as lower the freezing point.
Adding salt does not effect the temperature.Answer:Adding salt does not change the temperature at the time you add the salt, but it raises the temperature at which the water will boil
Salt lowers the freezing point of water, causing ice to melt at a lower temperature than it would otherwise. This is because salt disrupts the formation of ice crystals, making it harder for them to form and causing the ice to melt at a lower temperature.
The relationship between salt and ice temperature is that adding salt to ice lowers the temperature at which the ice melts. This is because salt disrupts the normal freezing process of water, causing the ice to melt at a lower temperature than it would without salt.
No, salt does not lower the boiling temperature of water. In fact, adding salt to water increases its boiling point. This occurs because the salt disrupts the formation of hydrogen bonds between water molecules, making it harder for them to escape as vapor.