Heat How Does The Study Of Heat Essay

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Heat How does the study of heat relate to the kinetic theory of matter?

There is a close relationship between the study of heat and the kinetic theory of matter. It is significant therefore to first understand the principles behind the kinetic theory of matter. This theory seeks to explain the differences that exist between the three different states of matter. It indicates that, matter is made up of particles that are constantly moving known as the atoms or the molecules (Benjamin Crowell, 2009).

The temperature that the object is at will dictate the state that the matter will be at. According to the kinetic theory, solids have their particles tightly bound to each other that even though they can vibrate, they cannot move to another location. Here the particles have very low kinetic energy and the particles of that particular solid are held together by the existing intermolecular forces of attraction, and due to the close proximity between the particles, they vibrate around a fixed point. If the temperature of a solid is raised, it then follows that the velocity of the particles in that solid will increase making the collisions between the particles more rampant hence the particles move farther apart than before the heating. This may result in significant alteration of the arrangement of the particles hence physical change of the state due to the breakdown of the solid.

In liquids it is noted that the particles have sufficient kinetic energy to stretch the intermolecular forces of attraction or enough space to move about, though they still attract one another. In this state, the intermolecular collisions are strong enough to force the particles apart and they appear to have a moving vibration, however the particles still remain under the control of the intermolecular forces of attraction. The velocity of the particles can however increase with the rising temperature, the temperature rise may cause the collisions to be so great that the intermolecular...

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At this stage a change of physical state may occur.
At the gaseous state, the substance has particles that have enough kinetic energy to break the intermolecular forces of attraction, here the particles move independent of each other. There is a random movement of the particles since they have broken and overcome any intermolecular forces of attraction. If the temperature of the gas is raised hence inducing more kinetic energy into the molecules, the collisions may break up the atoms hence producing the electrons and consequently changing the state of the matter.

From the above explanations, it is apparent that there is a close relationship between the study of heat and the kinetic theory of matter since it is the presence of heat that dictates the amount of kinetic energy in a matter hence dictating the state of the matter.

What is heat?

As already noted above, matter has atoms that are constantly moving and bumping into each other as well as vibrating back and forth. This vibration will therefore create a given form of energy referred to as heat or thermal energy. This heat energy is present in each and every matter regardless of the temperatures, even in the coldest places or state, there is still some measurable heat energy. Heat is therefore a form of energy that emanates from the collisions that are experienced between the molecules of matter (The University of Waikato, 2012).

It is worth noting that energy can take on various forms changing from one form to another. Different forms of energy can be changed to heat energy by increasing the velocity of the molecules therein.

What is temperature?

It is now known that each object has some kinetic energy in it. Temperature therefore, if measured in Kelvin degree, is the number that is proportional to the average kinetic…

Sources Used in Documents:

References

Benjamin Crowell, (2009). Heat is Kinetic Energy. Retrieved January 28, 2012 from http://www.vias.org/physics/bk2_03_02.html

Doug Haag, (2011). What Are the Various Properties of a Substance That Determine Its Heat Capacity? Retrieved January 28, 2012 from http://www.ehow.com/info_8458965_various-determine-its-heat-capacity.html

Gavin Sulivan & Campbell Edmondson, (2008). Heat and Temperature. Retrieved January 28, 2012 from http://ceaccp.oxfordjournals.org/content/8/3/104.full.pdf

ITP Nelson, (1997). Sources of Heat. Retrieved January 28, 2012 from http://resources.yesican-science.ca/lpdd/g07/lp/nelson/nel13.html
The University of Waikato, (2012). Heat Energy. Retrieved January 28, 2012 from http://www.sciencelearn.org.nz/Contexts/Fire/Science-Ideas-and-Concepts/Heat-energy
Temperatures.com, (2009). What is Temperature. Retrieved January 28, 2012 from http://www.temperatures.com/wit.html


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