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TheShapeOfTime
We were told in chemistry class to weigh an evaporating dish after it cooled. Does it's temperature affect it's mass?
TheShapeOfTime said:We were told in chemistry class to weigh an evaporating dish after it cooled. Does it's temperature affect it's mass?
Gokul43201 said:I can only think this is a safety measure. Also, depending on what kind of balance you are using, weighing something that's hot may give a faulty reading or might even damage the balance. Do you use a metal balace which uses moments or a digical balance which uses springs ? And I'll repeat :Temperature does not affect mass directly.
In your particular example, it would be more accurate if you weigh the dish while still little hot. When the copper sulfate cools, being slightly hygroscopic, it will start to re-absorb moisture from the atmosphere. If you wait too long for it to cool, it may have re-absorbed a considerable amount of moisture that your calculation will yield an underestimate.
TheShapeOfTime said:The substance was left in a desiccator, which would probably keep it from re-absorbing moisture (another question we were asked ). Maybe it's best to answer the question saying the temperature could affect the mass? I can't see any other possible answer... any ideas?
As Pervect has explained an increase in temperature results in an increase in mass though a balance scale would not be sensitive enough to show the slight increase.Ayham Sallah said:I think that temperaturte doesn't affect mass, but it do affect wieght of the body.
becuase if we put a piece of iron above a scale, we can consider that its weigh represent the pressure excerted form it onto the scale, and when the tempreture gets raised, the movemnt of molecules of the lowest part of the iron mass increases, this would raise the pressure excerted from the iron onto the scale, and would make the scale raise the value of the weight of the body.
here I think that it's the same as "increasing the temperature of gaz increses its pressure", its also increasing the temperature will increase the weight of any mass because of the incresed number of molecules of the body which hit the scale and cause it to raise the value of the weight of the body.
but i don't think that it raises the mass...
quantum123 said:[tex]E=mc^2[/tex]
As temperature rises, the kinetic energy of the molecules rises, according to the Einstein's equation, their masses must rise.
M Quack said:The direct effects of temperature on the weight are fairly small and have been listed above.
The relationship between temperature and mass is complex and depends on a variety of factors. In general, when temperature increases, the mass of a substance typically decreases. This is because as particles heat up, they gain kinetic energy and spread out, causing the substance to expand. However, this generalization may not always hold true as there are exceptions, such as when substances undergo a phase change.
The scientific explanation for the effect of temperature on mass lies in the kinetic theory of matter. This theory states that all particles are in constant motion and that this motion increases as temperature increases. As a result, the particles take up more space, causing the substance to expand and decrease in mass.
Yes, temperature can change the mass of an object. As mentioned earlier, as temperature increases, the particles gain kinetic energy and spread out, resulting in a decrease in mass. This effect is more noticeable in gases, but it can also occur in solids and liquids.
Theoretically, there is a specific temperature at which mass remains constant, known as absolute zero. This is the lowest possible temperature, at which all molecular motion stops, and particles have no kinetic energy. However, in practical terms, it is difficult to achieve absolute zero, so mass may still change at extremely low temperatures.
The mass of a chemical reaction may change due to temperature in a few ways. In an endothermic reaction, where heat is absorbed, the mass may increase as the reactants gain energy and expand. In an exothermic reaction, where heat is released, the mass may decrease as the products give off energy and contract. Additionally, changes in temperature can also affect the rate of a reaction, which can indirectly impact the mass.