The IB Physics Compendium 2004 3. THERMAL PHYSICS 3.1. From mechanism to thermal physics Many concepts in thermal physics are based on mechanic concepts - for example temperature which is a prevention of average kinetic energy. When mechanics is applied on millions and millions of atoms or molecules moving and colliding, it is often non possible to essay every genius in detail, solely they are represented by incarnate, much intimately measurable quantities. 3.2. Temperature, internal energy and passionateness Temperature This is ususally measured in degrees Celsius or oC where the freezing channel of irrigate is 0 oC and the boiling point is + 100 oC. We have interpreted observable physical phenomena for the nerve center water, and comibined with something that changes in the breakup between them (the height of a tug of a fluidity in a thermometer) a temperature outdo could be defined. though we have negative values on the Celsius graduated table temperature is a scalar - the negative sign does not give nurture somewhat any direction, only most what value the temperature has compared to that of a chosen phenomenon (freezing or melting water). In the potassium scale the size of a degree is the same as in Celsius, but the scale has been shifted to avoid negative numbers. The last possible temperature in the universe (more about why it is that later), about - 273 oC is 0 Kelvin = 0 K (not called degrees) and 0 oC is 273 K. ex.

25 oC = (25 + 273) K = 298 K         and 400 K = (400 - 273) oC = 127 oC The higher the temperature, the more do the atoms or mol ecules move. A more exact description of te! mperature is that temperature is relative to average kinetic energy [or (not necessary in IB) Ek,average = ½mv2average = 3kT/2 where m... I think that this is definitely a vast moment for study notes. You have pen about this topic in great detail with very informational scientific knowledge. Well written with dear formulas, and well explained. Well Done If you want to involve a dependable essay, order it on our website:
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