Molecular physics (easy stupid questions )

In summary: You will notice that they are not in the final equation. This is why they are not important for the raising of temperature with respect to time.In summary, the conversation discusses using electric energy to heat liquid in a metal bowl. It is observed that the liquid is warmer at the top of the bowl due to increased pressure from the heat. Putting a cover on the bowl can increase the temperature faster due to reduced heat loss. The possibility of the liquid's temperature not increasing even with current flow is discussed, and it is suggested that the molecules would eventually start to boil. The speed of temperature increase is calculated using specific heat and mass, and it is noted that they do not significantly affect the rate of temperature increase.
  • #1
goneftw
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[PLAIN]http://img560.imageshack.us/img560/6712/fizika5.jpg

Homework Statement


The electric energy is used to heat the liquid in the metalic bowl..

1.Why is the liquid warmer at the top of the bowl than the bottom?
2. Why does the liquid's temperature raise faster if the metalic bowl has a cover on?
3. In this experiment, is it possible that liquid's temperature doesn't raise up even then if the current is flowing through the coil? And why it is/isn't possible ?

4. Bowl has 0.5 kg of water in it. the heater gives heat to the water at rate of 36 J/s.
4.1*Calculate the speed of temperature's raising(Kelvin/min), if the water's specific heat is 4200 J/(Kg*K). You can ignore the bowl's specific heat...
4.2* If you don't ignore the bowl's specific heat then how does it affect the calculated temperetue's raising speed ? Why ?



Homework Equations


Q=c*m(t1-t2) Q-heat quantity, c-specific heat, m-mass of water,t-temperature


The Attempt at a Solution



1. Because when the coil heats the water molicules the molicules start moving faster and the pressure gets higher and the molecules rises up ?
2.Because the heat which would flow away without the cover now would make a a bigger pressure in the bowl and the process would happen much faster...
3.I really don't know, please someone explain this to me :(
4. I think I'm absolutely wrong with this one : Q=c*m(t1-t2) t1-t2=36*2/4200=0.017
4.2 don't know
 
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  • #2
1) Why would they move up ? Why not down because of gravity ? Think of what heat does to density of a liquid or gaz.

2)Liquid gets warm and expands----> pressure(bowl sealed)----> molecules want to "relax" and be at a more stable energy level, but they can't since the bowl has been sealed--->and with current still present there is no cooling, only heating. When Bowl was open there was some sort of cooling, a convection was happening.

3) What do you think will happen if the water starts boiling ? The molecules of liquid can always be heated up and start moving in all sorts of directions.

4) you can express Q=m*c(deltaT) as a function of heat with respect to time and differentiate it with respect to time. mass and specific heat would be the constants.
 

Related to Molecular physics (easy stupid questions )

What is molecular physics?

Molecular physics is a branch of physics that studies the behavior and interactions of molecules. It focuses on the physical properties and dynamics of molecules, such as their structure, energy, and motion.

What are some common applications of molecular physics?

Molecular physics has many practical applications, including in fields such as chemistry, biology, materials science, and engineering. Some examples include understanding chemical reactions, developing new materials, and creating advanced technologies.

How does molecular physics differ from atomic physics?

While both molecular and atomic physics study the behavior of particles at the atomic and subatomic level, molecular physics specifically focuses on molecules, which are made up of two or more atoms bonded together. Atomic physics, on the other hand, focuses on individual atoms and their properties.

What are some key concepts in molecular physics?

Some key concepts in molecular physics include molecular structure, molecular energy levels, molecular spectra, and molecular interactions. These concepts help us understand the properties and behavior of molecules at a fundamental level.

What are some common experimental techniques used in molecular physics?

Some common experimental techniques used in molecular physics include spectroscopy, diffraction, and laser manipulation. These techniques allow scientists to study the properties and behavior of molecules in a controlled environment and gather data for further analysis and understanding.

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