9_a_lob_j01
In a reversible cell consisting of two metal-metal oxide electrodes and a solid oxide electrolyte through which current is transported solely by 0<bsup>=<ast><bsup> ions, the change in free energy dg accompanying the passage of one mole of oxygen is given by: — 2EF where E is the voltage developed across the cell and F is the Faraday.
arc(r_0009_0002__a_r_0009_0004__cell, r_0009_0003__reversible, attrib8).
arc(r_0009_0005__consisting, r_0009_0002__a_r_0009_0004__cell, arg0).
arc(r_0009_0005__consisting, r_0009_0011__and, r_0009_0006__of_clr19).
arc(r_0009_0007__two_r_0009_0009__oxide_r_0009_0010__electrodes, r_0009_0008__metal__hyphen__metal, attrib24).
arc(r_0009_0011__and, r_0009_0007__two_r_0009_0009__oxide_r_0009_0010__electrodes, conj1).
arc(r_0009_0011__and, r_0009_0012__a_r_0009_0014__oxide_r_0009_0015__electrolyte, conj2).
arc(r_0009_0012__a_r_0009_0014__oxide_r_0009_0015__electrolyte, r_0009_0013__solid, attrib37).
arc(r_0009_0019__is, r_0009_0020__transported, scope).
arc(r_0009_0020__transported, r_0009_0012__a_r_0009_0014__oxide_r_0009_0015__electrolyte, r_0009_0016__through_nim48).
arc(r_0009_0020__transported, r_0009_0018__current, arg1).
arc(r_0009_0020__transported, r_0009_0023__0_bsup_=_ast__bsup__r_0009_0024__ions, arg0).
arc(r_0009_0026__the_r_0009_0027__change, r_0009_0030__energy_r_0009_0031__dg, r_0009_0028__in).
arc(r_0009_0030__energy_r_0009_0031__dg, r_0009_0029__free, attrib82).
arc(r_0009_0032__accompanying, r_0009_0026__the_r_0009_0027__change, arg0).
arc(r_0009_0032__accompanying, r_0009_0033__the_r_0009_0034__passage, arg1).
arc(r_0009_0033__the_r_0009_0034__passage, r_0009_0036__one_r_0009_0037__mole, r_0009_0035__of).
arc(r_0009_0036__one_r_0009_0037__mole, r_0009_0039__oxygen, r_0009_0038__of).
arc(r_0009_0040__is, r_0009_0002__a_r_0009_0004__cell, r_0009_0001__In_nim5).
arc(r_0009_0040__is, r_0009_0041__given, scope).
arc(r_0009_0041__given, r_0009_0026__the_r_0009_0027__change, arg1).
arc(r_0009_0041__given, r_0009_0045__2EF, arg0).
arc(r_0009_0048__is, r_0009_0045__2EF, nim127).
arc(r_0009_0048__is, r_0009_0047__E, arg0).
arc(r_0009_0048__is, r_0009_0049__the_r_0009_0050__voltage, prd).
arc(r_0009_0051__developed, r_0009_0049__the_r_0009_0050__voltage, arg0).
arc(r_0009_0051__developed, r_0009_0053__the_r_0009_0054__cell, r_0009_0052__across_nim148).
arc(r_0009_0055__and, r_0009_0048__is, conj1).
arc(r_0009_0055__and, r_0009_0057__is, conj2).
arc(r_0009_0057__is, r_0009_0045__2EF, nim127).
arc(r_0009_0057__is, r_0009_0056__F, arg0).
arc(r_0009_0057__is, r_0009_0058__the_r_0009_0059__Faraday, prd).
ERROR: Line 1 Char 7 Token "Syntax" continuing with "error at token 'not" : Wrong token type or value, expected lower_word with value "cnf"
n9_a_lob_j01
n9_a_lob_j01_4
In
n9_a_lob_j01_7
a
n9_a_lob_j01_10
reversible
n9_a_lob_j01_12
cell
n9_a_lob_j01_15
consisting
n9_a_lob_j01_18
of
n9_a_lob_j01_23
two
n9_a_lob_j01_26
metal-metal
n9_a_lob_j01_28
oxide
n9_a_lob_j01_30
electrodes
n9_a_lob_j01_33
and
n9_a_lob_j01_36
a
n9_a_lob_j01_39
solid
n9_a_lob_j01_41
oxide
n9_a_lob_j01_43
electrolyte
n9_a_lob_j01_47
through
n9_a_lob_j01_50
which
n9_a_lob_j01_53
current
n9_a_lob_j01_55
is
n9_a_lob_j01_58
*ICH*-121
n9_a_lob_j01_60
transported
n9_a_lob_j01_63
solely
n9_a_lob_j01_65
by
n9_a_lob_j01_68
0<bsup>=<ast><bsup>
n9_a_lob_j01_70
ions
n9_a_lob_j01_72
,
n9_a_lob_j01_75
the
n9_a_lob_j01_77
change
n9_a_lob_j01_80
in
n9_a_lob_j01_84
free
n9_a_lob_j01_86
energy
n9_a_lob_j01_88
dg
n9_a_lob_j01_91
accompanying
n9_a_lob_j01_94
the
n9_a_lob_j01_96
passage
n9_a_lob_j01_99
of
n9_a_lob_j01_102
one
n9_a_lob_j01_104
mole
n9_a_lob_j01_107
of
n9_a_lob_j01_110
oxygen
n9_a_lob_j01_112
is
n9_a_lob_j01_115
given
n9_a_lob_j01_118
by
n9_a_lob_j01_120
:
n9_a_lob_j01_122
<mdash>
n9_a_lob_j01_125
2EF
n9_a_lob_j01_129
where
n9_a_lob_j01_134
E
n9_a_lob_j01_136
is
n9_a_lob_j01_139
the
n9_a_lob_j01_141
voltage
n9_a_lob_j01_144
developed
n9_a_lob_j01_147
across
n9_a_lob_j01_150
the
n9_a_lob_j01_152
cell
n9_a_lob_j01_155
and
n9_a_lob_j01_159
F
n9_a_lob_j01_161
is
n9_a_lob_j01_164
the
n9_a_lob_j01_166
Faraday
n9_a_lob_j01_168
.
n9_a_lob_j01_1
IP-MAT
n9_a_lob_j01_2
PP-NIM
n9_a_lob_j01_1->n9_a_lob_j01_2
n9_a_lob_j01_71
PUNC
n9_a_lob_j01_1->n9_a_lob_j01_71
n9_a_lob_j01_73
NP-SBJ
n9_a_lob_j01_1->n9_a_lob_j01_73
n9_a_lob_j01_111
BEP;_cat_VePASS_
n9_a_lob_j01_1->n9_a_lob_j01_111
n9_a_lob_j01_113
IP-PPL-CAT
n9_a_lob_j01_1->n9_a_lob_j01_113
n9_a_lob_j01_167
PUNC
n9_a_lob_j01_1->n9_a_lob_j01_167
n9_a_lob_j01_3
P-ROLE
n9_a_lob_j01_2->n9_a_lob_j01_3
n9_a_lob_j01_5
NP
n9_a_lob_j01_2->n9_a_lob_j01_5
n9_a_lob_j01_3->n9_a_lob_j01_4
n9_a_lob_j01_6
D
n9_a_lob_j01_5->n9_a_lob_j01_6
n9_a_lob_j01_8
ADJP
n9_a_lob_j01_5->n9_a_lob_j01_8
n9_a_lob_j01_11
N
n9_a_lob_j01_5->n9_a_lob_j01_11
n9_a_lob_j01_13
IP-PPL
n9_a_lob_j01_5->n9_a_lob_j01_13
n9_a_lob_j01_6->n9_a_lob_j01_7
n9_a_lob_j01_9
ADJ
n9_a_lob_j01_8->n9_a_lob_j01_9
n9_a_lob_j01_9->n9_a_lob_j01_10
n9_a_lob_j01_11->n9_a_lob_j01_12
n9_a_lob_j01_14
VAG;_Ipr_
n9_a_lob_j01_13->n9_a_lob_j01_14
n9_a_lob_j01_16
PP-CLR
n9_a_lob_j01_13->n9_a_lob_j01_16
n9_a_lob_j01_14->n9_a_lob_j01_15
n9_a_lob_j01_17
P-ROLE
n9_a_lob_j01_16->n9_a_lob_j01_17
n9_a_lob_j01_19
NP
n9_a_lob_j01_16->n9_a_lob_j01_19
n9_a_lob_j01_17->n9_a_lob_j01_18
n9_a_lob_j01_20
NLYR
n9_a_lob_j01_19->n9_a_lob_j01_20
n9_a_lob_j01_21
NLYR
n9_a_lob_j01_20->n9_a_lob_j01_21
n9_a_lob_j01_31
CONJP
n9_a_lob_j01_20->n9_a_lob_j01_31
n9_a_lob_j01_22
NUM
n9_a_lob_j01_21->n9_a_lob_j01_22
n9_a_lob_j01_24
ADJP
n9_a_lob_j01_21->n9_a_lob_j01_24
n9_a_lob_j01_27
N
n9_a_lob_j01_21->n9_a_lob_j01_27
n9_a_lob_j01_29
NS
n9_a_lob_j01_21->n9_a_lob_j01_29
n9_a_lob_j01_22->n9_a_lob_j01_23
n9_a_lob_j01_25
ADJ
n9_a_lob_j01_24->n9_a_lob_j01_25
n9_a_lob_j01_25->n9_a_lob_j01_26
n9_a_lob_j01_27->n9_a_lob_j01_28
n9_a_lob_j01_29->n9_a_lob_j01_30
n9_a_lob_j01_32
CONJ
n9_a_lob_j01_31->n9_a_lob_j01_32
n9_a_lob_j01_34
NLYR
n9_a_lob_j01_31->n9_a_lob_j01_34
n9_a_lob_j01_32->n9_a_lob_j01_33
n9_a_lob_j01_35
D
n9_a_lob_j01_34->n9_a_lob_j01_35
n9_a_lob_j01_37
ADJP
n9_a_lob_j01_34->n9_a_lob_j01_37
n9_a_lob_j01_40
N
n9_a_lob_j01_34->n9_a_lob_j01_40
n9_a_lob_j01_42
N
n9_a_lob_j01_34->n9_a_lob_j01_42
n9_a_lob_j01_44
IP-REL
n9_a_lob_j01_34->n9_a_lob_j01_44
n9_a_lob_j01_35->n9_a_lob_j01_36
n9_a_lob_j01_38
ADJ
n9_a_lob_j01_37->n9_a_lob_j01_38
n9_a_lob_j01_38->n9_a_lob_j01_39
n9_a_lob_j01_40->n9_a_lob_j01_41
n9_a_lob_j01_42->n9_a_lob_j01_43
n9_a_lob_j01_45
PP-121
n9_a_lob_j01_44->n9_a_lob_j01_45
n9_a_lob_j01_51
NP-SBJ
n9_a_lob_j01_44->n9_a_lob_j01_51
n9_a_lob_j01_54
BEP;_cat_VePASS_
n9_a_lob_j01_44->n9_a_lob_j01_54
n9_a_lob_j01_56
IP-PPL-CAT
n9_a_lob_j01_44->n9_a_lob_j01_56
n9_a_lob_j01_46
P-ROLE
n9_a_lob_j01_45->n9_a_lob_j01_46
n9_a_lob_j01_48
NP
n9_a_lob_j01_45->n9_a_lob_j01_48
n9_a_lob_j01_46->n9_a_lob_j01_47
n9_a_lob_j01_49
RPRO
n9_a_lob_j01_48->n9_a_lob_j01_49
n9_a_lob_j01_49->n9_a_lob_j01_50
n9_a_lob_j01_52
N
n9_a_lob_j01_51->n9_a_lob_j01_52
n9_a_lob_j01_52->n9_a_lob_j01_53
n9_a_lob_j01_54->n9_a_lob_j01_55
n9_a_lob_j01_57
PP-NIM
n9_a_lob_j01_56->n9_a_lob_j01_57
n9_a_lob_j01_59
VVN;_Tn_
n9_a_lob_j01_56->n9_a_lob_j01_59
n9_a_lob_j01_61
PP-LGS
n9_a_lob_j01_56->n9_a_lob_j01_61
n9_a_lob_j01_57->n9_a_lob_j01_58
n9_a_lob_j01_59->n9_a_lob_j01_60
n9_a_lob_j01_62
ADV
n9_a_lob_j01_61->n9_a_lob_j01_62
n9_a_lob_j01_64
P-ROLE;_lgs_
n9_a_lob_j01_61->n9_a_lob_j01_64
n9_a_lob_j01_66
NP
n9_a_lob_j01_61->n9_a_lob_j01_66
n9_a_lob_j01_62->n9_a_lob_j01_63
n9_a_lob_j01_64->n9_a_lob_j01_65
n9_a_lob_j01_67
NUM
n9_a_lob_j01_66->n9_a_lob_j01_67
n9_a_lob_j01_69
NS
n9_a_lob_j01_66->n9_a_lob_j01_69
n9_a_lob_j01_67->n9_a_lob_j01_68
n9_a_lob_j01_69->n9_a_lob_j01_70
n9_a_lob_j01_71->n9_a_lob_j01_72
n9_a_lob_j01_74
D
n9_a_lob_j01_73->n9_a_lob_j01_74
n9_a_lob_j01_76
N
n9_a_lob_j01_73->n9_a_lob_j01_76
n9_a_lob_j01_78
PP
n9_a_lob_j01_73->n9_a_lob_j01_78
n9_a_lob_j01_89
IP-PPL
n9_a_lob_j01_73->n9_a_lob_j01_89
n9_a_lob_j01_74->n9_a_lob_j01_75
n9_a_lob_j01_76->n9_a_lob_j01_77
n9_a_lob_j01_79
P-ROLE
n9_a_lob_j01_78->n9_a_lob_j01_79
n9_a_lob_j01_81
NP
n9_a_lob_j01_78->n9_a_lob_j01_81
n9_a_lob_j01_79->n9_a_lob_j01_80
n9_a_lob_j01_82
ADJP
n9_a_lob_j01_81->n9_a_lob_j01_82
n9_a_lob_j01_85
N
n9_a_lob_j01_81->n9_a_lob_j01_85
n9_a_lob_j01_87
N
n9_a_lob_j01_81->n9_a_lob_j01_87
n9_a_lob_j01_83
ADJ
n9_a_lob_j01_82->n9_a_lob_j01_83
n9_a_lob_j01_83->n9_a_lob_j01_84
n9_a_lob_j01_85->n9_a_lob_j01_86
n9_a_lob_j01_87->n9_a_lob_j01_88
n9_a_lob_j01_90
VAG;_Tn_
n9_a_lob_j01_89->n9_a_lob_j01_90
n9_a_lob_j01_92
NP-OB1
n9_a_lob_j01_89->n9_a_lob_j01_92
n9_a_lob_j01_90->n9_a_lob_j01_91
n9_a_lob_j01_93
D
n9_a_lob_j01_92->n9_a_lob_j01_93
n9_a_lob_j01_95
N
n9_a_lob_j01_92->n9_a_lob_j01_95
n9_a_lob_j01_97
PP
n9_a_lob_j01_92->n9_a_lob_j01_97
n9_a_lob_j01_93->n9_a_lob_j01_94
n9_a_lob_j01_95->n9_a_lob_j01_96
n9_a_lob_j01_98
P-ROLE
n9_a_lob_j01_97->n9_a_lob_j01_98
n9_a_lob_j01_100
NP
n9_a_lob_j01_97->n9_a_lob_j01_100
n9_a_lob_j01_98->n9_a_lob_j01_99
n9_a_lob_j01_101
NUM
n9_a_lob_j01_100->n9_a_lob_j01_101
n9_a_lob_j01_103
N
n9_a_lob_j01_100->n9_a_lob_j01_103
n9_a_lob_j01_105
PP
n9_a_lob_j01_100->n9_a_lob_j01_105
n9_a_lob_j01_101->n9_a_lob_j01_102
n9_a_lob_j01_103->n9_a_lob_j01_104
n9_a_lob_j01_106
P-ROLE
n9_a_lob_j01_105->n9_a_lob_j01_106
n9_a_lob_j01_108
NP
n9_a_lob_j01_105->n9_a_lob_j01_108
n9_a_lob_j01_106->n9_a_lob_j01_107
n9_a_lob_j01_109
N
n9_a_lob_j01_108->n9_a_lob_j01_109
n9_a_lob_j01_109->n9_a_lob_j01_110
n9_a_lob_j01_111->n9_a_lob_j01_112
n9_a_lob_j01_114
VVN;_Tn_
n9_a_lob_j01_113->n9_a_lob_j01_114
n9_a_lob_j01_116
PP-LGS
n9_a_lob_j01_113->n9_a_lob_j01_116
n9_a_lob_j01_114->n9_a_lob_j01_115
n9_a_lob_j01_117
P-ROLE;_lgs_
n9_a_lob_j01_116->n9_a_lob_j01_117
n9_a_lob_j01_119
PUNC
n9_a_lob_j01_116->n9_a_lob_j01_119
n9_a_lob_j01_121
PUNC
n9_a_lob_j01_116->n9_a_lob_j01_121
n9_a_lob_j01_123
NP
n9_a_lob_j01_116->n9_a_lob_j01_123
n9_a_lob_j01_117->n9_a_lob_j01_118
n9_a_lob_j01_119->n9_a_lob_j01_120
n9_a_lob_j01_121->n9_a_lob_j01_122
n9_a_lob_j01_124
FO
n9_a_lob_j01_123->n9_a_lob_j01_124
n9_a_lob_j01_126
IP-REL
n9_a_lob_j01_123->n9_a_lob_j01_126
n9_a_lob_j01_124->n9_a_lob_j01_125
n9_a_lob_j01_127
ADVP-NIM
n9_a_lob_j01_126->n9_a_lob_j01_127
n9_a_lob_j01_130
ILYR
n9_a_lob_j01_126->n9_a_lob_j01_130
n9_a_lob_j01_128
RADV
n9_a_lob_j01_127->n9_a_lob_j01_128
n9_a_lob_j01_128->n9_a_lob_j01_129
n9_a_lob_j01_131
ILYR
n9_a_lob_j01_130->n9_a_lob_j01_131
n9_a_lob_j01_153
CONJP
n9_a_lob_j01_130->n9_a_lob_j01_153
n9_a_lob_j01_132
NP-SBJ
n9_a_lob_j01_131->n9_a_lob_j01_132
n9_a_lob_j01_135
BEP;_Ln_
n9_a_lob_j01_131->n9_a_lob_j01_135
n9_a_lob_j01_137
NP-PRD
n9_a_lob_j01_131->n9_a_lob_j01_137
n9_a_lob_j01_133
NPR
n9_a_lob_j01_132->n9_a_lob_j01_133
n9_a_lob_j01_133->n9_a_lob_j01_134
n9_a_lob_j01_135->n9_a_lob_j01_136
n9_a_lob_j01_138
D
n9_a_lob_j01_137->n9_a_lob_j01_138
n9_a_lob_j01_140
N
n9_a_lob_j01_137->n9_a_lob_j01_140
n9_a_lob_j01_142
IP-PPL
n9_a_lob_j01_137->n9_a_lob_j01_142
n9_a_lob_j01_138->n9_a_lob_j01_139
n9_a_lob_j01_140->n9_a_lob_j01_141
n9_a_lob_j01_143
VVN;_I_
n9_a_lob_j01_142->n9_a_lob_j01_143
n9_a_lob_j01_145
PP-NIM
n9_a_lob_j01_142->n9_a_lob_j01_145
n9_a_lob_j01_143->n9_a_lob_j01_144
n9_a_lob_j01_146
P-ROLE
n9_a_lob_j01_145->n9_a_lob_j01_146
n9_a_lob_j01_148
NP
n9_a_lob_j01_145->n9_a_lob_j01_148
n9_a_lob_j01_146->n9_a_lob_j01_147
n9_a_lob_j01_149
D
n9_a_lob_j01_148->n9_a_lob_j01_149
n9_a_lob_j01_151
N
n9_a_lob_j01_148->n9_a_lob_j01_151
n9_a_lob_j01_149->n9_a_lob_j01_150
n9_a_lob_j01_151->n9_a_lob_j01_152
n9_a_lob_j01_154
CONJ
n9_a_lob_j01_153->n9_a_lob_j01_154
n9_a_lob_j01_156
ILYR
n9_a_lob_j01_153->n9_a_lob_j01_156
n9_a_lob_j01_154->n9_a_lob_j01_155
n9_a_lob_j01_157
NP-SBJ
n9_a_lob_j01_156->n9_a_lob_j01_157
n9_a_lob_j01_160
BEP;_Ln_
n9_a_lob_j01_156->n9_a_lob_j01_160
n9_a_lob_j01_162
NP-PRD
n9_a_lob_j01_156->n9_a_lob_j01_162
n9_a_lob_j01_158
NPR
n9_a_lob_j01_157->n9_a_lob_j01_158
n9_a_lob_j01_158->n9_a_lob_j01_159
n9_a_lob_j01_160->n9_a_lob_j01_161
n9_a_lob_j01_163
D
n9_a_lob_j01_162->n9_a_lob_j01_163
n9_a_lob_j01_165
N
n9_a_lob_j01_162->n9_a_lob_j01_165
n9_a_lob_j01_163->n9_a_lob_j01_164
n9_a_lob_j01_165->n9_a_lob_j01_166
n9_a_lob_j01_167->n9_a_lob_j01_168
( (IP-MAT (PP-NIM (P-ROLE In;{in})
(NP (D a;{a})
(ADJP (ADJ reversible;{reversible}))
(N cell;{cell})
(IP-PPL (VAG;_Ipr_ consisting;{consist[of]})
(PP-CLR (P-ROLE of;{of})
(NP (NLYR (NLYR (NUM two;{two})
(ADJP (ADJ metal_<hyphen>_metal;{metal_metal}))
(N oxide;{oxide})
(NS electrodes;{electrode}))
(CONJP (CONJ and;{and})
(NLYR (D a;{a})
(ADJP (ADJ solid;{solid}))
(N oxide;{oxide})
(N electrolyte;{electrolyte})
(IP-REL (PP-121 (P-ROLE through;{through})
(NP (RPRO which;{which})))
(NP-SBJ (N current;{current}))
(BEP;_cat_VePASS_ is;{be})
(IP-PPL-CAT (PP-NIM *ICH*-121)
(VVN;_Tn_ transported;{transport})
(PP-LGS (ADV solely;{solely})
(P-ROLE;_lgs_ by;{by})
(NP (NUM 0<bsup>=<ast><bsup>)
(NS ions;{ion})))))))))))))
(PUNC ,)
(NP-SBJ (D the;{the})
(N change;{change})
(PP (P-ROLE in;{in})
(NP (ADJP (ADJ free;{free}))
(N energy;{energy})
(N dg;{dg})))
(IP-PPL (VAG;_Tn_ accompanying;{accompany})
(NP-OB1 (D the;{the})
(N passage;{passage})
(PP (P-ROLE of;{of})
(NP (NUM one;{one})
(N mole;{mole})
(PP (P-ROLE of;{of})
(NP (N oxygen;{oxygen}))))))))
(BEP;_cat_VePASS_ is;{be})
(IP-PPL-CAT (VVN;_Tn_ given;{give})
(PP-LGS (P-ROLE;_lgs_ by;{by})
(PUNC :)
(PUNC <mdash>)
(NP (FO 2EF)
(IP-REL (ADVP-NIM (RADV where;{where}))
(ILYR (ILYR (NP-SBJ (NPR E;{E}))
(BEP;_Ln_ is;{be})
(NP-PRD (D the;{the})
(N voltage;{voltage})
(IP-PPL (VVN;_I_ developed;{develop})
(PP-NIM (P-ROLE across;{across})
(NP (D the;{the})
(N cell;{cell}))))))
(CONJP (CONJ and;{and})
(ILYR (NP-SBJ (NPR F;{F}))
(BEP;_Ln_ is;{be})
(NP-PRD (D the;{the})
(N Faraday;{faraday})))))))))
(PUNC .))
(ID 9_a_lob_j01))