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Properties of substance:
barium
Group of substances:
inorganic
Physical appearance:
cubic metal
Empirical formula (Hill's system for organic substances):
Ba
Structural formula as text:
Ba
Molar/atomic mass: 137.34
Melting point (°C):
727
Boiling point (°C):
1860
Solubility (g/100 g of solvent):
ammonia liquid
: 153.6 (-33.4°C) [
Ref.
]
barium chloride fused
: 22.5 (1100°C) [
Ref.
]
gallium
: 0.77 (500°C) [
Ref.
]
mercury
: 0.16 (0°C) [
Ref.
]
mercury
: 0.33 (20°C) [
Ref.
]
mercury
: 0.63 (50°C) [
Ref.
]
mercury
: 1.29 (99°C) [
Ref.
]
water
: reaction [
Ref.
]
Numerical data:
Year of discovery: 1808
Hardness on the Mohs’ scale: 2
Density:
3.76 (20°C, g/cm
3
)
Reactions of synthesis:
[
Ref.1
,
Ref.2
]
3BaO + Si → BaSiO
3
+ 2Ba
[
Ref.1
,
Ref.2
]
3BaO + 2Al → 3Ba + Al
2
O
3
[
Ref.1
]
Ba(N
3
)
2
→ Ba + 3N
2
Half-life:
114
56
Ba = 460 ms (β
+
(about 100%), β
+
p (20%), α (0.9%), heavy cluster emission
14
C)
115
56
Ba = 450 ms (β
+
(100%), β
+
p)
116
56
Ba = 1.3 s (β
+
(100%), β
+
p (3%))
117
56
Ba = 1.75 s (β
+
(100%), β
+
p (13%), β
+
α (0.024%))
118
56
Ba = 5.2 s (β
+
(100%))
119
56
Ba = 5.4 s (β
+
(100%), β
+
p (25%))
120
56
Ba = 24 s (β
+
(100%))
121
56
Ba = 29.7 s (β
+
(100%), β
+
p (0.02%))
122
56
Ba = 1.95 min (β
+
(100%))
123
56
Ba = 2.7 min (β
+
(100%))
123m
56
Ba = 830 ns (internal transition (100%))
124
56
Ba = 11.0 min (β
+
(100%))
125
56
Ba = 3.3 min (β
+
(100%))
125m
56
Ba = 2.76 μs (internal transition (100%))
126
56
Ba = 100 min (β
+
(100%))
127
56
Ba = 12.7 min (β
+
(100%))
127m
56
Ba = 1.93 s (internal transition (100%))
128
56
Ba = 2.43 d (electron capture (100%))
129
56
Ba = 2.23 h (β
+
(100%))
129m
56
Ba = 2.135 h (β
+
(about 100%))
130
56
Ba = 1 · 10
21
y ( (isotopic abundance 0,106%))
130m
56
Ba = 9.54 ms (internal transition (100%))
131
56
Ba = 11.52 d (β
+
(100%))
131m
56
Ba = 14.26 min (internal transition (100%))
132
56
Ba = stable ( (isotopic abundance 0,101%))
133
56
Ba = 10.551 y (electron capture (100%))
133m
56
Ba = 38.90 h (internal transition (about 100%), electron capture (0.0104%))
134
56
Ba = stable ( (isotopic abundance 2,417%))
134m
56
Ba = 2.63 μs (internal transition (100%))
135
56
Ba = stable ( (isotopic abundance 6,592%))
135m
56
Ba = 28.11 h (internal transition (100%))
136
56
Ba = stable ( (isotopic abundance 7,854%))
136m
56
Ba = 308.4 ms (internal transition (100%))
137
56
Ba = stable ( (isotopic abundance 11,232%))
137m
56
Ba = 2.552 min (internal transition (100%))
137n
56
Ba = 590 ns (internal transition (100%))
138
56
Ba = stable ( (isotopic abundance 71,698%))
138m
56
Ba = 800 ns (internal transition (100%))
139
56
Ba = 83.13 min (β
-
(100%))
140
56
Ba = 12.7527 d (β
-
(100%))
141
56
Ba = 18.27 min (β
-
(100%))
142
56
Ba = 10.6 min (β
-
(100%))
143
56
Ba = 14.5 s (β
-
(100%))
144
56
Ba = 11.5 s (β
-
(100%))
145
56
Ba = 4.31 s (β
-
(100%))
146
56
Ba = 2.22 s (β
-
(100%))
147
56
Ba = 485 ms (β
-
(100%), β
-
n (0.06%))
148
56
Ba = 620 ms (β
-
(100%), β
-
n (0.2%))
149
56
Ba = 348 ms (β
-
(100%), β
-
n (0.43%))
150
56
Ba = 259 ms (β
-
(100%), β
-
n )
151
56
Ba = 167 ms (β
-
(100%), β
-
n )
152
56
Ba = 139 ms (β
-
(100%), β
-
n )
153
56
Ba = 116 ms (β
-
(100%), β
-
n )
154
56
Ba = 53 ms (β
-
(100%))
Vapour pressure (Torr):
0.1 (724°C)
1 (861°C)
10 (1044°C)
100 (1300°C)
Electrode potential:
Ba
2+
+ 2e
-
→ Ba, E = -2.905 V (water, 25°C)
Standard molar enthalpy (heat) of formation Δ
f
H
0
(298.15 K, kJ/mol):
0 (s)
Standard molar Gibbs energy of formation Δ
f
G
0
(298.15 K, kJ/mol):
0 (s)
Standard molar entropy S
0
(298.15 K, J/(mol·K)):
67 (s)
Molar heat capacity at constant pressure C
p
(298.15 K, J/(mol·K)):
28.7 (s)
Molar enthalpy (heat) of fusion Δ
fus
H (kJ/mol):
8.66
Enthalpy (heat) of vaporization Δ
vap
H (kJ/mol):
150.9
References:
Dean J.A. Lange's handbook of chemistry. - 1999. - pp. 3.18
Гурвич Я.А. Справочник молодого аппаратчика-химика. - М.: Химия, 1991. - pp. 50 [Russian]
Неорганические синтезы. - Сб. 1. - М.: ИИЛ, 1951. - pp. 10 [Russian]
Рабинович В.А., Хавин З.Я. Краткий химический справочник. - Л.: Химия, 1977. - pp. 54 [Russian]
Химическая энциклопедия. - Т. 1. - М.: Советская энциклопедия, 1988. - pp. 241-242 [Russian]
Энциклопедия для детей. - Т.17: Химия. - М.: Аванта+, 2004. - pp. 195 [Russian]
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© Collected Ruslan Anatolievich Kiper, burewestnik@mail.ru