| Artikel
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Formel
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| Ventiltrieb und Hubraum
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| PH-Wert-Berechnung
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pH = -log10 c(H+)
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| PH-Wert-Berechnung
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c(H+) = 10-pH mol/L
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| PH-Wert-Berechnung
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pOH = -log10 c(OH-)
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| PH-Wert-Berechnung
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pH = 14 - pOH
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| PH-Wert-Berechnung
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pH = 14 - pOH
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| PH-Wert-Berechnung
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pH = 14 - 1
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| PH-Wert-Berechnung
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pH = 13
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| PH-Wert-Berechnung
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pH = 1/2 · (pKS - log10 c(HA))
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c(Salz)
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| pH
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=
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pKS(Säure) + log10 ──────
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c(Säure)
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| Säure-Base-Titration
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c(M) · V(M)
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| c(P)
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=
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────────
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V(P)
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| Puffersysteme
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c(Salz)
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| pH
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=
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pKS(Säure) + log10 ──────
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c(Säure)
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| Motorkennlinien
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| Elektromagnetisches Spektrum
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| Viskosität
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η = ν · ρ
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π · r4 · g · h · t
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| ν
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=
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──────────
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8 · V · l
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2 · r² · g · (ρK - ρFl)
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| η
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=
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──────────────
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9 · v · (1 + 2,4 · r/R)
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m² · N · kg · s
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| [η]
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=
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─────────
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kg · m³ · m
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| Drehmoment
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Fl · ll = Fr · lr
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| Drehmoment
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M = F · l
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| Drehmoment
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Ml = Mr
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| Dichte
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| Allgemeine Zustandsgleichung der Gase
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p · V = n · R · T
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| V1 · p1
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V2 · p2
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| ─────
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=
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─────
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| T1
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T2
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| Chemisches Gleichgewicht
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S + A ⇌ E + H2O
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khin [Produkte] c(C) · c(D)
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| K
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=
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──── = ─────── = ───────
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krück [Edukte] c(A) · c(B)
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[Produkte] 0,4 mol Ester · 0,4 mol Wasser
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| K
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=
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─────── = ──────────────────────── = 16
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[Edukte] 0,1 mol Carbonsäure · 0,1 mol Alkohol
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| Konzentration
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m(X)
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| w(X)
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=
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────────
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m(X) + m(Y)
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V(X) · 100%
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| σ(X)
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=
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────────
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Vges
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| Neutralisation
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| s · c(S) · V(S)
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=
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b · c(B) · V(B)
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| Wirkungsgrad
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| Elektrische Leitfähigkeit
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| Elastizitätsmodul
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σZ · 100% FZ · L0
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| E
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=
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─────── = ─────
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ε S · ΔL
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FZ · L0 18.000 N · 2.000 mm · mm²
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| ΔL
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=
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───── = ────────────────── = 1,4 mm
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S · E 120 mm² · 210.000 N
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| Planetengetriebe: Aufbau und Funktion
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zHohl
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| i
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=
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1 + ────
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zSonne
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| Bruchdehnung
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| Brechzahl
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| sin α
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n2
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| ────
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=
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────
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| sin 𝜷
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n1
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n1 · sin α
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| n2
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=
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───────
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sin 𝜷
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1,000292 · sin 45°
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| n2
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=
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────────────
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sin 30°
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1,000292 · 0,7071
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| n2
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=
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────────────
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0,5
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| Spannung
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| Solarenergie
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| Leistung
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P = W / t
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| Leistung
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P = U · I
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M · 2 · π · n · kW · min
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| P
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=
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────────────────
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1.000 W · 60 s
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| Stromstärke
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| Spezifische Wärmekapazität
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| Drehfrequenz
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| Ohmsches Gesetz
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| Widerstand
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| Reihenschaltung
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| Zugspannung
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| Dehnung
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| Wellenlänge
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| Plancksches Wirkungsquantum
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| Fotometrie
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Itr · 100%
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| T
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=
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───────
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Iein
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Iabs · 100%
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| A
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=
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───────
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Iein
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| Übersetzungsverhältnis
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n1 z2 M2 d2 r2 U2
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| i
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=
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── = ── = ── = ── = ── = ──
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n2 z1 M1 d1 r1 U1
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| Permanganometrie
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5 · c(Permanganat-Lsg.) · V(Permanganat-Lsg.) = 2 · c(Oxalsäure) · V(Oxals.)
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| Permanganometrie
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c(O) = 0,051 mol/L
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| s · c(S) · V(S)
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=
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b · c(B) · V(B)
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| ΔOZ(Oxi.) · c(Oxi.) · V(Oxi. )
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=
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ΔOZ(Red.) · c(Red.) · V(Red.)
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5 · c(P) · V(P)
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| c(O)
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=
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──────────
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2 · V(O)
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5 · 0,01 mol · 102 mL
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| c(O)
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=
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──────────────
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L · 2 · 50 mL
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| Iodometrie
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| Tillmans-Reagenz
|
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| m(DCPIP)
|
|
M(DCPIP)
|
| ───────────
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=
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───────────
|
| m(Ascorbinsäure)
|
|
M(Ascorbinsäure)
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M(DCPIP) · m(Asc.)
|
| m(DCPIP)
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=
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─────────────
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M(Asc.)
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290,1 · 1 g
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| m(DCPIP)
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=
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─────── = 1,65 g
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176,1
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| Calconcarbonsäure
|
m = M · n
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| Calconcarbonsäure
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n = c · V
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| Calconcarbonsäure
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m(Ca) = c · V · M
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| Calconcarbonsäure
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m(Ca) = 0,023 mol/L · 0,1 L · 40,08 g · mol−1
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| Calconcarbonsäure
|
m(Ca) = 0,092 g = 92,2 mg
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c(EDTA) · V(EDTA)
|
| c(Ca)
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=
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────────────
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V(Ca)
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0,1 mol · 23 mL
|
| c(Ca)
|
=
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──────────
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|
L · 100 mL
|
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| Konzentration: Anworten
|
|
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|
m(CuSO4)
|
| w(CuSO4)
|
=
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──────────────
|
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m(CuSO4) + m(Wasser)
|
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7,3 g
|
| w(CuSO4)
|
=
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────────
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7,3 g + 138 g
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| Spezifischer Widerstand
|
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| Parallelschaltung
|
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| 1
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|
1 1
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| ──
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=
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── + ── + ...
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| Rges
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R1 R2
|
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| Enthalpie
|
ΔH = -Q = -c · m · ΔT
|
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| Komplexometrische Titration
|
|
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c(M) · V(M)
|
| c(P)
|
=
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────────
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V(P)
|
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| Radiocarbonmethode: Lösungen
|
A = A0 · 0,5t/HWZ
|
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log A - log A0
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| t
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=
|
HWZ · ─────────
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|
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log 0,5
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|
log 3,5 - log 5,4
|
| t
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=
|
5.730 a · ───────────
|
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- 0,3
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| Mischungstemperatur
|
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c1 · m1 · T1 + c2 · m2 · T2
|
| Tm
|
=
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──────────────────
|
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c1 · m1 + c2 · m2
|
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| Wärmedurchgangskoeffizient
|
P = k · A · ΔT
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| Verdünnungsreihe
|
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| 𝜷St
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=
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0,01 mol/L · 158,04 g/mol
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| Wirkungsgrad: Lösung
|
|
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| PH-Skala
|
pH = - log10 c(H+)
|
| PH-Skala
|
pOH = - log c(OH-)
|
| PH-Skala
|
pH + pOH = 14
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
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| Säurestärke
|
pKS = 2 · pH + lg c(HA)
|
| Säurestärke
|
pH = 0,5 · (pKS - lg c(HA))
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
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| Druck
|
p = F / A
|
| Druck
|
ED = p · V
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Radiocarbonmethode
|
A = 888 Bq · 0,5100 a/5.730 a = 877 Bq
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Aktivität
|
A = A0 · 0,5t/HWZ
|
| Aktivität
|
A = 888 Bq · 0,5100 a/5.730 a = 877 Bq
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
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| Reaktionsgeschwindigkeit
|
k = A·e-EA / R · T
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
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| Neutron
|
N = A - Z
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Roheisen
|
2 Fe2O3 + 3 C 4 Fe + 3 CO2
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
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| Molare Masse
|
M = m / n
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Avogadro-Konstante
|
NA = 6,022 · 1023 mol–1
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Lichtgeschwindigkeit
|
c = 299.792,458 km · s–1
|
| Lichtgeschwindigkeit
|
c = f · λ
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
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| Umfangsgeschwindigkeit
|
v = π · d · n
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Allgemeine Gaskonstante
|
R = p0 · V0,m/T0
|
| Allgemeine Gaskonstante
|
R = 83,145 hPa · L · mol-1 · K-1
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
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| Fallbeschleunigung
|
Fg = m · g
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Gewichtskraft
|
Fg = m · g
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| POH-Wert
|
pOH = - log c(OH-)
|
| POH-Wert
|
pH + pOH = 14
|
| POH-Wert
|
pOH = 14 - pH
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Kinetische Energie
|
Ekin = 0,5 · m · v2
|
| Kinetische Energie
|
Epot = Ekin
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Potentielle Energie
|
Epot = m · g · h
|
| Potentielle Energie
|
Epot = Ekin
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Widerstandsschweißen
|
Q = R · I² · t
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Wärmemenge
|
Q = c · m · ΔT
|
| Wärmemenge
|
Q = P · t
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Elektrische Energie
|
Eel = P · t
|
| Elektrische Energie
|
Eel = U · I · t
|
| Elektrische Energie
|
Eel = R · I² · t
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Elektrophile Addition
|
AE
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Regression
|
I = 172,9 mA/g · m(NaCl) + 6,4 mA
|
| Regression
|
m(NaCl) = (I – 6,4 mA) · g / 172,9 mA
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Frequenz
|
f = c/λ
|
| Frequenz
|
f = E/ℎ
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Nucleophile Substitution
|
SN
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Elektrophile Substitution
|
SE
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Wasserhärte
|
1°dH ≙ 0,179 mmol/L Erdalkalimetall-Ionen ≙ 7,19 mg MgO/L ≙ 10 mg CaO/L
|
| Wasserhärte
|
1 mmol Erdalkalimetall-Ionen ≙ 5,608 °dH
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Nucleophile Addition
|
AN
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Oxonium
|
H2O + H+ H3O+
|
| Oxonium
|
pH = - log10 c(H+)
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Fotosynthese
|
6 CO2 + 6 H2O → C6H12O6 + 6 O2
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Radikalische Substitution
|
SR
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Schmelzwärme
|
Q = q · m
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|
| Verdampfungswärme
|
Q = r · m
|
| {{{ZL}}}
|
|
{{{ZR}}}
|
| {{{BL}}}
|
{{{ist}}}
|
{{{BR}}}
|
| {{{NL}}}
|
|
{{{NR}}}
|
|