Zustandsänderung eines Gases (Prozente)
About points...
We associate a certain number of points with each exercise.
When you click an exercise into a collection, this number will be taken as points for the exercise, kind of "by default".
But once the exercise is on the collection, you can edit the number of points for the exercise in the collection independently, without any effect on "points by default" as represented by the number here.
That being said... How many "default points" should you associate with an exercise upon creation?
As with difficulty, there is no straight forward and generally accepted way.
But as a guideline, we tend to give as many points by default as there are mathematical steps to do in the exercise.
Again, very vague... But the number should kind of represent the "work" required.
When you click an exercise into a collection, this number will be taken as points for the exercise, kind of "by default".
But once the exercise is on the collection, you can edit the number of points for the exercise in the collection independently, without any effect on "points by default" as represented by the number here.
That being said... How many "default points" should you associate with an exercise upon creation?
As with difficulty, there is no straight forward and generally accepted way.
But as a guideline, we tend to give as many points by default as there are mathematical steps to do in the exercise.
Again, very vague... But the number should kind of represent the "work" required.
About difficulty...
We associate a certain difficulty with each exercise.
When you click an exercise into a collection, this number will be taken as difficulty for the exercise, kind of "by default".
But once the exercise is on the collection, you can edit its difficulty in the collection independently, without any effect on the "difficulty by default" here.
Why we use chess pieces? Well... we like chess, we like playing around with \(\LaTeX\)-fonts, we wanted symbols that need less space than six stars in a table-column... But in your layouts, you are of course free to indicate the difficulty of the exercise the way you want.
That being said... How "difficult" is an exercise? It depends on many factors, like what was being taught etc.
In physics exercises, we try to follow this pattern:
Level 1 - One formula (one you would find in a reference book) is enough to solve the exercise. Example exercise
Level 2 - Two formulas are needed, it's possible to compute an "in-between" solution, i.e. no algebraic equation needed. Example exercise
Level 3 - "Chain-computations" like on level 2, but 3+ calculations. Still, no equations, i.e. you are not forced to solve it in an algebraic manner. Example exercise
Level 4 - Exercise needs to be solved by algebraic equations, not possible to calculate numerical "in-between" results. Example exercise
Level 5 -
Level 6 -
When you click an exercise into a collection, this number will be taken as difficulty for the exercise, kind of "by default".
But once the exercise is on the collection, you can edit its difficulty in the collection independently, without any effect on the "difficulty by default" here.
Why we use chess pieces? Well... we like chess, we like playing around with \(\LaTeX\)-fonts, we wanted symbols that need less space than six stars in a table-column... But in your layouts, you are of course free to indicate the difficulty of the exercise the way you want.
That being said... How "difficult" is an exercise? It depends on many factors, like what was being taught etc.
In physics exercises, we try to follow this pattern:
Level 1 - One formula (one you would find in a reference book) is enough to solve the exercise. Example exercise
Level 2 - Two formulas are needed, it's possible to compute an "in-between" solution, i.e. no algebraic equation needed. Example exercise
Level 3 - "Chain-computations" like on level 2, but 3+ calculations. Still, no equations, i.e. you are not forced to solve it in an algebraic manner. Example exercise
Level 4 - Exercise needs to be solved by algebraic equations, not possible to calculate numerical "in-between" results. Example exercise
Level 5 -
Level 6 -
Question
Solution
Short
Video
\(\LaTeX\)
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Visit our YouTube-Channel to see solutions to other exercises.
Don't forget to subscribe to our channel, like the videos and leave comments!
Exercise:
In einem idealen Gas herrscht ein Druck von PVO. Welcher Druck stellt sich ein wenn das Volumen um DV vergrössert wird und gleichzeitig die Temperatur um DT abnimmt?
Solution:
Geg sscP PVO quad textDruck vorher sscT T quad textBeliegige Temperatur vorher! sscV V quad textBeliebiges Volumen vorher sscT . T quad textTemperatur nachher! sscV . V quad textVolumen nachher! % GesDruck sscPsscPsiPa % Bei solchen Aufgaben ist es wichig dass Indizes für die einzelnen Zustände vorher nachher eingeführt werden. Weiter bleibt die Gasmenge konstant. Das heisst die Mohlzahl ändert nicht. Damit gilt gemäss der universellen Gasgleichung: % fracsscP sscVsscT n R fracsscP sscVsscT % Auflösung nach der gesuchten Grösse und einsetzen der gegebenen Grössen liefert: % sscP fracsscP sscV sscTsscV sscT sscP fracPVO V . T. V T fracPVO .. sscP PN approx PNS % sscP fracsscP sscV sscTsscV sscT &approx PNS
In einem idealen Gas herrscht ein Druck von PVO. Welcher Druck stellt sich ein wenn das Volumen um DV vergrössert wird und gleichzeitig die Temperatur um DT abnimmt?
Solution:
Geg sscP PVO quad textDruck vorher sscT T quad textBeliegige Temperatur vorher! sscV V quad textBeliebiges Volumen vorher sscT . T quad textTemperatur nachher! sscV . V quad textVolumen nachher! % GesDruck sscPsscPsiPa % Bei solchen Aufgaben ist es wichig dass Indizes für die einzelnen Zustände vorher nachher eingeführt werden. Weiter bleibt die Gasmenge konstant. Das heisst die Mohlzahl ändert nicht. Damit gilt gemäss der universellen Gasgleichung: % fracsscP sscVsscT n R fracsscP sscVsscT % Auflösung nach der gesuchten Grösse und einsetzen der gegebenen Grössen liefert: % sscP fracsscP sscV sscTsscV sscT sscP fracPVO V . T. V T fracPVO .. sscP PN approx PNS % sscP fracsscP sscV sscTsscV sscT &approx PNS
Meta Information
Exercise:
In einem idealen Gas herrscht ein Druck von PVO. Welcher Druck stellt sich ein wenn das Volumen um DV vergrössert wird und gleichzeitig die Temperatur um DT abnimmt?
Solution:
Geg sscP PVO quad textDruck vorher sscT T quad textBeliegige Temperatur vorher! sscV V quad textBeliebiges Volumen vorher sscT . T quad textTemperatur nachher! sscV . V quad textVolumen nachher! % GesDruck sscPsscPsiPa % Bei solchen Aufgaben ist es wichig dass Indizes für die einzelnen Zustände vorher nachher eingeführt werden. Weiter bleibt die Gasmenge konstant. Das heisst die Mohlzahl ändert nicht. Damit gilt gemäss der universellen Gasgleichung: % fracsscP sscVsscT n R fracsscP sscVsscT % Auflösung nach der gesuchten Grösse und einsetzen der gegebenen Grössen liefert: % sscP fracsscP sscV sscTsscV sscT sscP fracPVO V . T. V T fracPVO .. sscP PN approx PNS % sscP fracsscP sscV sscTsscV sscT &approx PNS
In einem idealen Gas herrscht ein Druck von PVO. Welcher Druck stellt sich ein wenn das Volumen um DV vergrössert wird und gleichzeitig die Temperatur um DT abnimmt?
Solution:
Geg sscP PVO quad textDruck vorher sscT T quad textBeliegige Temperatur vorher! sscV V quad textBeliebiges Volumen vorher sscT . T quad textTemperatur nachher! sscV . V quad textVolumen nachher! % GesDruck sscPsscPsiPa % Bei solchen Aufgaben ist es wichig dass Indizes für die einzelnen Zustände vorher nachher eingeführt werden. Weiter bleibt die Gasmenge konstant. Das heisst die Mohlzahl ändert nicht. Damit gilt gemäss der universellen Gasgleichung: % fracsscP sscVsscT n R fracsscP sscVsscT % Auflösung nach der gesuchten Grösse und einsetzen der gegebenen Grössen liefert: % sscP fracsscP sscV sscTsscV sscT sscP fracPVO V . T. V T fracPVO .. sscP PN approx PNS % sscP fracsscP sscV sscTsscV sscT &approx PNS
Contained in these collections:
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Universelle Gasgleichung by dk