Revision history for TutoriumChemieStoechiometrie
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Additions:
Formeln:
__c = n/V__
- c Stoffmengenkonzentration [mol l-1] (früher: „Molarität“)
- n Stoffmenge gelöster Stoff [mol] V Volumen Lösung
__Χ = mi/V(l)__
- c∗ Massenkonzentration von i [g l-1]
- mi Masse von i [g]
- V(l) Volumen Lösung [l]
__p V = n R T __
- p Druck [Pa]
- V Volumen [m3]
- n Stoffmenge [mol]
- T Temperatur [K]
- R univ. Gaskonstante [J mol-1 K-1]
__c = n/V__
- c Stoffmengenkonzentration [mol l-1] (früher: „Molarität“)
- n Stoffmenge gelöster Stoff [mol] V Volumen Lösung
__Χ = mi/V(l)__
- c∗ Massenkonzentration von i [g l-1]
- mi Masse von i [g]
- V(l) Volumen Lösung [l]
__p V = n R T __
- p Druck [Pa]
- V Volumen [m3]
- n Stoffmenge [mol]
- T Temperatur [K]
- R univ. Gaskonstante [J mol-1 K-1]
Additions:
- Konstanten univ. Gaskonstante R = 8.314 [ J mol-1 K-1]
- Avogadro-Zahl NA = 6.022•1023 [mol-1]
- Faraday-Konstante F = 96485 [ C mol-1]
- Umrechnungen Druck 1 atm = 760 Torr = 1.013 bar = 101300 Pa
- Temperatur T [K] = t [°C] + 273.15
- Stoffmenge n = m/M; n Stoffmenge [mol]; m Masse [g]; M Molare Masse [g mol-1]
- n = N/NA N Teilchenzahl; NA Avogadro-Konstante
- Avogadro-Zahl NA = 6.022•1023 [mol-1]
- Faraday-Konstante F = 96485 [ C mol-1]
- Umrechnungen Druck 1 atm = 760 Torr = 1.013 bar = 101300 Pa
- Temperatur T [K] = t [°C] + 273.15
- Stoffmenge n = m/M; n Stoffmenge [mol]; m Masse [g]; M Molare Masse [g mol-1]
- n = N/NA N Teilchenzahl; NA Avogadro-Konstante
Additions:
**Stöchiometrisches Rechnen**
Konstanten/Grundgleichungen:
Konstanten/Grundgleichungen:
Additions:
Katalysator bei endothermen Reaktionen:
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Katalysator bei exothermen Reaktionen:
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**Katalysator**
Wirkprinzip (graphisch):
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Wirkprinzip (graphisch):
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Additions:
||**Chemisches Gleichgewicht**
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