16
Eva von Bahr und J. Koenigsberger :
e _ K 499.4 9,6-10-3
^ m " 9660 '
Beispiel der Berechnung von Xm und g' aus 3 x'.
X^ = 594 pp, Xg = 612 pp, Xg = 634 pp.
K\ — 3,32-10-4, K'g = 3,13-10-4, K'g = 1,12-10-4.
Xi _^
E = ^ ^ ^ 4,9 37,4 1,84-2,87 _ ^
V-M Xg^
2,1 40,2 1,84 — 5,65
X'^
= X^ = 35,3 - ^ - 10-'o = 1,18 -10-47.
\'^ = 5^86-10-3. beob. 5,75-10-3.
Ci = — 0,029; Cg = — 0,087; Cg = — 0,148.
= 1,554; Agg = 1,971; Aig = 3,07.
,2 0,283 — 0,046
12
0.554
. 10-40 = 4,26-10-
-11. o-'
' B 12
= 6,5-10-6.
,2 0,880 — 0,558
^ = 0,97 !
0,880 — 0,091
13
2,07
10-10 = 3,32-10-44; = 5^8-10-6.
10-40 = 3,80-10-44; g'_^ = 6,3-10-6.
Berechnung von g und g' aus x'^ = 3,8-10 4; = 5,75-10 ^
x' = 2,2-10-4; x = 6,10-10-3.
ed Xm
2x',
7,56 -10-2;
Xi
= 1,24-106; a -
— 2 x' RR
2 x'
= — 1,13-103.
X'm — X'
a-X2
= 9,7 -10-3; g' — e - g = 7,4 - 10 6.
Chromalaun-Lösung (10 g auf 500 HgO).
a) X^ = 610 pp; Xg = 633 pp; Xm = 582 pp.
x'i =5,98-10-6; K'g = 4,07-10-6.
= — 0,09; Cg = - 0,16; A = 1,523.
Eva von Bahr und J. Koenigsberger :
e _ K 499.4 9,6-10-3
^ m " 9660 '
Beispiel der Berechnung von Xm und g' aus 3 x'.
X^ = 594 pp, Xg = 612 pp, Xg = 634 pp.
K\ — 3,32-10-4, K'g = 3,13-10-4, K'g = 1,12-10-4.
Xi _^
E = ^ ^ ^ 4,9 37,4 1,84-2,87 _ ^
V-M Xg^
2,1 40,2 1,84 — 5,65
X'^
= X^ = 35,3 - ^ - 10-'o = 1,18 -10-47.
\'^ = 5^86-10-3. beob. 5,75-10-3.
Ci = — 0,029; Cg = — 0,087; Cg = — 0,148.
= 1,554; Agg = 1,971; Aig = 3,07.
,2 0,283 — 0,046
12
0.554
. 10-40 = 4,26-10-
-11. o-'
' B 12
= 6,5-10-6.
,2 0,880 — 0,558
^ = 0,97 !
0,880 — 0,091
13
2,07
10-10 = 3,32-10-44; = 5^8-10-6.
10-40 = 3,80-10-44; g'_^ = 6,3-10-6.
Berechnung von g und g' aus x'^ = 3,8-10 4; = 5,75-10 ^
x' = 2,2-10-4; x = 6,10-10-3.
ed Xm
2x',
7,56 -10-2;
Xi
= 1,24-106; a -
— 2 x' RR
2 x'
= — 1,13-103.
X'm — X'
a-X2
= 9,7 -10-3; g' — e - g = 7,4 - 10 6.
Chromalaun-Lösung (10 g auf 500 HgO).
a) X^ = 610 pp; Xg = 633 pp; Xm = 582 pp.
x'i =5,98-10-6; K'g = 4,07-10-6.
= — 0,09; Cg = - 0,16; A = 1,523.