I
nte
rna
t
io
na
l J
o
urna
l o
f
Adv
a
nces in Applie
d Science
s
(
I
J
AAS)
Vo
l.
4
,
No
.
3
,
Sep
tem
b
er
201
5
,
p
p
.
90
~
94
I
SS
N:
2252
-
8814
90
J
o
ur
na
l ho
m
ep
a
g
e
:
h
ttp
:
//ia
e
s
jo
u
r
n
a
l.c
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m/o
n
lin
e/in
d
ex
.
p
h
p
/I
J
AAS
Resis
tivity
St
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s o
n Mn Sit
e Subs
tit
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ed LCM
S
O
M
a
ng
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B
ha
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t
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K
a
t
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ri
a
*
,
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g
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v
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liy
a
**
,
*
*
*
,
J
.
H
.
M
a
rk
na
**
*
De
p
a
rtm
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t
o
f
P
h
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sic
s,
G
o
v
e
rn
m
e
n
t
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c
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Co
ll
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,
In
d
ia
**
De
p
a
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t
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n
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tec
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V
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.
En
g
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In
d
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*
*
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D
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p
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m
e
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t
o
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5
In
s
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it
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C
o
r
r
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s
p
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A
uth
o
r
:
J
.
H.
Ma
r
k
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a,
Dep
ar
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m
en
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,
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x
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2
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t
h
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m
ag
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i
n
s
u
lato
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s
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w
h
er
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s
at
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ig
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a
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y
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n
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m
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g
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n
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u
la
to
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s
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n
t
h
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m
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iate
d
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2
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5
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s
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e
ar
th
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s
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t
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d
er
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[
2
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,
[
3
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.
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n
ter
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t
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s
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4
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Sin
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tial
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s
o
f
f
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o
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u
ch
a
s
s
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r
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s
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y
lin
k
ed
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th
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Mn
io
n
s
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s
u
b
s
tit
u
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n
a
l
s
tu
d
y
at
t
h
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te
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r
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o
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t
a
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atic
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ts
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lar
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e
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u
m
b
e
r
o
f
s
t
u
d
ies
h
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v
e
r
ep
o
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ted
th
e
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f
ec
t
o
f
Mn
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ite
s
u
b
s
ti
tu
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o
n
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h
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ical
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o
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ties
o
f
d
if
f
er
en
t
m
a
n
g
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n
it
e
s
y
s
te
m
s
.
Gen
er
all
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it
h
as
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ee
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f
o
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n
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th
at
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o
s
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c
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m
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1
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1
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3
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4
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5
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[
1
6
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d
Ge
[
1
7
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r
esu
lt
s
i
n
t
h
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lo
w
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i
n
g
o
f
tr
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n
s
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m
p
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[
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d
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to
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ar
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T
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b
u
t
to
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en
t
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n
ts
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s
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ter
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s
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p
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ties
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h
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r
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attr
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w
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k
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g
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I
t c
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er
s
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t,
t
h
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ar
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t
w
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c
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al
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ts
a
n
d
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ii)
lo
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m
a
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n
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co
u
p
li
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g
ef
f
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t
s
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in
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l
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g
t
h
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tr
a
n
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te
m
p
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atu
r
es
o
f
th
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C
M
R
m
a
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g
a
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ite
s
.
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o
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s
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u
ct
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al
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f
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n
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f
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s
an
d
in
t
h
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r
o
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d
s
tate
p
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o
f
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m
an
g
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n
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.
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n
m
i
n
d
t
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ab
o
v
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Mn
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Evaluation Warning : The document was created with Spire.PDF for Python.
IJ
AA
S
I
SS
N:
2252
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8814
R
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tivi
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S
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2
O
3
,
C
aCO
3
,
Mn
O
2
a
n
d
Sb
2
O
5
w
er
e
m
i
x
ed
in
s
to
ic
h
io
m
e
tr
ic
p
r
o
p
o
r
tio
n
s
an
d
ca
lcin
ed
at
9
5
0
º
C
f
o
r
2
4
h
r
s
.
Sa
m
p
les
w
er
e
t
h
en
p
r
es
s
ed
in
to
p
ellets
an
d
s
in
ter
ed
at
1
0
5
0
º
C
f
o
r
4
8
h
r
s
f
o
llo
w
ed
b
y
a
s
i
n
ter
in
g
at
1
1
5
0
º
C
f
o
r
7
2
h
r
s
.
Fig
u
r
e
1
s
h
o
w
s
th
e
f
lo
w
d
iag
r
a
m
co
n
tain
i
n
g
v
ar
io
u
s
h
ea
ti
n
g
,
g
r
in
d
in
g
a
n
d
p
elletizi
n
g
s
tep
s
in
v
o
l
v
ed
i
n
t
h
e
co
n
v
e
n
tio
n
al
s
o
lid
s
tate
r
ea
ctio
n
r
o
u
te
u
s
ed
f
o
r
s
y
n
t
h
esiz
in
g
L
a
0.
67
Ca
0.
33
Mn
1
-
x
Sb
x
O
3
m
a
n
g
a
n
ites
.
X
-
r
a
y
d
i
f
f
r
ac
tio
n
p
atter
n
w
as
r
ec
o
r
d
ed
o
n
P
h
ilip
s
d
if
f
r
ac
to
m
eter
(
P
W
3
0
4
0
/6
0
,
X’
p
er
t
P
R
O)
u
s
i
n
g
C
u
K
α
r
ad
iatio
n
a
t
R
T
.
St
r
u
c
tu
r
al
an
a
l
y
s
is
w
a
s
ca
r
r
ied
o
u
t
u
s
in
g
th
e
s
ta
n
d
ar
d
FULL
P
R
OF
co
d
e
[
1
8
]
.
E
lectr
ical
r
esis
t
iv
i
t
y
an
d
m
a
g
n
e
to
r
esis
ta
n
ce
m
ea
s
u
r
e
m
e
n
t
s
(
te
m
p
er
at
u
r
e
r
a
n
g
e:
5
-
3
0
0
K
an
d
f
ield
r
an
g
e
:
0
-
8
T
)
w
er
e
p
er
f
o
r
m
ed
u
s
i
n
g
t
h
e
s
tan
d
ar
d
f
o
u
r
p
r
o
b
e
d
c
m
et
h
o
d
.
Fig
u
r
e
1
.
Flo
w
d
iag
r
a
m
co
n
tai
n
in
g
v
ar
io
u
s
h
ea
ti
n
g
,
g
r
in
d
i
n
g
an
d
p
elletizin
g
s
tep
s
i
n
v
o
lv
ed
in
th
e
co
n
v
e
n
tio
n
al
s
o
lid
s
tate
r
ea
cti
o
n
r
o
u
te
an
d
u
s
ed
f
o
r
s
y
n
t
h
esi
zin
g
L
a
0.
67
Ca
0.
33
Mn
1
-
x
Sb
x
O
3
m
an
g
a
n
ite
s
3.
RE
SU
L
T
S
A
ND
AN
AL
Y
SI
S
I
n
o
r
d
er
to
u
n
d
er
s
tan
d
th
e
s
tr
u
ctu
r
e,
s
tr
u
ct
u
r
al
p
h
ase
s
p
r
esen
t
an
d
p
h
a
s
e
p
u
r
it
y
o
f
L
C
M
S
O
s
y
s
te
m
,
XR
D
s
t
u
d
ies o
n
all
t
h
e
Sb
-
d
o
p
ed
L
a
0.
67
Ca
0.
33
Mn
1
-
x
Sb
x
O
3
(
L
C
MSO)
(
x
=
0
.
0
0
,
0
.
0
2
,
0
.
0
4
,
0
.
0
6
,
0
.
0
8
an
d
0
.
1
0
)
s
a
m
p
les
w
er
e
ca
r
r
ied
o
u
t
at
R
T
.
Fig
u
r
e
2
(
a
)
d
ep
icts
th
e
XR
D
r
a
w
d
ata
o
f
all
t
h
e
L
C
M
S
O
s
a
m
p
le
s
s
h
o
w
in
g
s
in
g
le
p
h
a
s
ic
n
at
u
r
e
w
ith
o
u
t
a
n
y
d
etec
tab
le
i
m
p
u
r
ities
a
n
d
an
y
s
tr
u
ct
u
r
al
p
h
ase
tr
an
s
itio
n
.
Fig
u
r
e
2
(
b
)
s
h
o
w
s
an
en
lar
g
ed
v
ie
w
o
f
m
o
s
t
in
t
en
s
e
(
1
2
1
)
XR
D
p
ea
k
o
f
L
C
MSO
s
y
s
te
m
d
ep
ictin
g
t
h
e
s
h
if
ti
n
g
o
f
(
1
2
1
)
p
ea
k
to
w
ar
d
s
lo
w
er
2
d
eg
r
ee
a
n
d
co
n
v
er
ted
i
n
to
d
o
u
b
let
w
h
ic
h
ca
n
b
e
attr
ib
u
ted
to
t
h
e
s
u
b
s
tit
u
tio
n
o
f
s
m
aller
Sb
5+
(
0
.
6
Å
)
at
lar
g
er
Mn
3+
(
0
.
6
4
5
Å
)
s
ite
an
d
h
e
n
ce
en
h
a
n
ce
m
en
t in
lat
tice
p
ar
a
m
eter
s
a
n
d
u
n
it c
el
l v
o
l
u
m
e.
Fig
u
r
e
2
.
(
a)
XR
D
p
atter
n
s
o
f
L
C
MSO
s
a
m
p
les
;
(
b
)
E
n
lar
g
e
v
ie
w
o
f
(
1
2
1
)
XR
D
p
ea
k
o
f
L
C
MSO
s
a
m
p
le
s
Evaluation Warning : The document was created with Spire.PDF for Python.
I
SS
N
:
2
2
5
2
-
8814
IJ
AA
S
Vo
l.
4
,
No
.
3
,
Sep
tem
b
er
2
0
1
5
:
90
–
94
92
3
.
1
.
F
o
ur
P
ro
be
Resis
t
iv
it
y
M
e
a
s
ure
m
e
nts
I
n
o
r
d
er
to
u
n
d
er
s
tan
d
th
e
s
u
b
s
tit
u
tio
n
al
ef
f
ec
t
o
f
Sb
+5
io
n
at
Mn
-
s
ite
o
n
th
e
tr
an
s
p
o
r
t
in
La
0.
67
Ca
0.
33
Mn
1
-
x
Sb
x
O
3
(
L
C
M
SO)
m
an
g
a
n
ites
,
te
m
p
er
at
u
r
e
d
ep
en
d
en
t
r
es
is
ta
n
ce
m
a
n
g
an
i
tes
h
a
v
e
b
ee
n
car
r
ied
o
u
t
in
th
e
te
m
p
er
atu
r
e
r
an
g
e
5
–
3
0
0
K
u
n
d
er
ze
r
o
ap
p
lied
f
ield
.
P
lo
ts
o
f
te
m
p
er
atu
r
e
d
ep
en
d
en
ce
o
f
r
esis
ti
v
it
y
u
n
d
er
ze
r
o
ap
p
lied
f
ield
f
o
r
all
t
h
e
L
C
MSO
s
a
m
p
les
ar
e
s
h
o
w
n
i
n
F
ig
u
r
e
3
(
a
)
.
A
ll
t
h
e
s
a
m
p
le
s
ex
h
ib
it
m
eta
l
(
d
ρ
>
0
)
to
in
s
u
l
ato
r
(
d
ρ
<
0
)
tr
a
n
s
itio
n
te
m
p
er
atu
r
e
(
T
P
)
.
Su
b
s
titu
t
io
n
al
e
f
f
e
ct
o
f
Sb
5+
d
o
p
ed
at
Mn
s
i
te
clea
r
l
y
in
d
icate
s
t
h
e
i
n
cr
ea
s
e
i
n
p
ea
k
r
esi
s
ti
v
it
y
(
ρ
P
)
an
d
r
ed
u
ctio
n
i
n
T
P
w
ith
in
cr
ea
s
in
g
Sb
5+
co
n
te
n
t
(
x
)
.
Valu
es o
f
ρ
P
a
n
d
T
P
f
o
r
all
th
e
L
C
MS
O
s
a
m
p
les s
t
u
d
ied
ar
e
tab
u
lated
in
T
ab
le
1
.
Fig
u
r
e
3
.
(
a
)
T
em
p
er
atu
r
e
d
ep
en
d
en
ce
o
f
r
esi
s
ti
v
it
y
(
in
lo
g
ar
ith
m
ic
s
ca
le)
u
n
d
er
ze
r
o
ap
p
li
ed
f
iled
f
o
r
L
C
MSO
Sa
m
p
les
; (
b
)
Var
iatio
n
in
T
P
an
d
P
(
in
lo
g
ar
it
h
m
ic
s
ca
le)
w
i
th
Sb
5+
co
n
te
n
t (
x
)
f
o
r
L
C
M
SO
Sa
m
p
les
T
ab
le
1
.
Valu
es o
f
r
esis
ti
v
it
y
a
t p
ea
k
(
P
)
an
d
tr
an
s
itio
n
te
m
p
er
atu
r
e
(
T
P
)
f
o
r
L
a
0.
67
Ca
0.
33
Mn
1
-
x
Sb
x
O
3
s
a
m
p
le
s
S
a
mp
l
e
C
o
d
e
&
C
o
n
t
e
n
t
(
x
)
P
e
a
k
R
e
si
s
t
i
v
i
t
y
(
P
)
(
Ω
c
m)
T
r
a
n
si
t
i
o
n
T
e
mp
e
r
a
t
u
r
e
T
P
(
K
)
S
0
(
0
.
0
0
)
0
.
3
8
1
2
5
9
S
2
(
0
.
0
2
)
3
.
3
2
5
2
0
4
S
4
(
0
.
0
4
)
1
1
8
.
3
4
4
1
4
4
S
6
(
0
.
0
6
)
4
2
6
.
5
7
9
1
1
6
S
8
(
0
.
0
8
)
6
9
6
0
.
5
6
2
1
0
5
S
1
0
(
0
.
1
0
)
7
5
4
2
.
5
9
2
77
I
n
cr
ea
s
e
in
r
esi
s
ti
v
it
y
an
d
r
ed
u
ctio
n
in
T
P
in
L
C
M
SO s
y
s
te
m
ca
n
b
e
u
n
d
er
s
to
o
d
as f
o
llo
w
:
1.
I
o
n
ic
s
ize,
v
ale
n
ce
s
tate,
co
o
r
d
in
atio
n
n
u
m
b
er
a
n
d
s
tr
u
ct
u
r
e
o
f
Sb
5+
an
d
M
n
3
+
/4+
io
n
s
le
ad
u
s
to
b
elie
v
e
th
at,
i
n
t
h
e
d
esire
d
s
i
x
-
f
o
ld
c
o
o
r
d
in
atio
n
,
Sb
5+
io
n
s
(
0
.
6
0
Å)
w
o
u
ld
r
ep
lace
Mn
4+
(
0
.
5
3
Å)
r
ath
er
th
a
n
M
n
3+
(
0
.
6
4
5
Å
)
io
n
ic
s
ite
d
u
e
to
les
s
er
v
alen
ce
d
if
f
er
e
n
ce
b
et
w
ee
n
Sb
5+
/M
n
4+
p
air
th
a
n
Sb
5+
/Mn
3+
p
air
.
2.
Su
b
s
ti
tu
t
io
n
o
f
s
m
aller
Sb
5+
io
n
s
at
Mn
4+
s
ite
i
n
tr
o
d
u
ce
s
a
s
tr
u
ctu
r
al
d
is
o
r
d
er
at
B
-
s
ite
in
AB
O
3
p
er
o
v
s
k
ite
s
tr
u
ct
u
r
e
d
u
e
to
a
lar
g
e
io
n
ic
s
ize
d
if
f
er
e
n
ce
b
et
w
ee
n
t
h
e
m
.
3.
Ma
g
n
e
tic
in
ter
ac
tio
n
s
b
et
w
ee
n
th
e
m
a
g
n
etic
M
n
3+
a
n
d
d
ia
m
a
g
n
et
ic
Sb
5+
co
m
e
i
n
to
t
h
e
p
i
ctu
r
e.
4.
Stru
ct
u
r
al
d
is
o
r
d
er
r
esu
lt
in
th
e
m
o
d
if
ica
tio
n
s
o
f
Mn
-
O
-
M
n
b
o
n
d
an
g
les
a
n
d
Mn
-
O
b
o
n
d
len
g
t
h
s
w
h
ic
h
r
esu
lti
n
g
i
n
t
h
e
d
eter
io
r
atio
n
i
n
e
g
e
lectr
o
n
tr
a
n
s
f
er
f
r
o
m
M
n
3+
to
M
n
4+
v
ia
O
2
-
an
d
h
e
n
ce
r
ed
u
ce
s
t
h
e
tr
a
n
s
f
er
in
te
g
r
al
o
f
iti
n
er
an
t e
lectr
o
n
s
.
T
h
is
in
tu
r
n
en
h
a
n
ce
s
t
h
e
r
esis
tiv
it
y
an
d
s
u
p
p
r
ess
es T
P
w
i
th
i
n
cr
ea
s
i
n
g
x
.
5.
W
ith
in
cr
ea
s
i
n
g
Sb
5+
co
n
te
n
t
(
x
)
in
L
C
MS
O
s
y
s
te
m
,
Mn
4+
io
n
ic
d
en
s
it
y
d
ec
r
ea
s
es
b
y
a
f
ac
to
r
o
f
2
x
an
d
Mn
3+
i
n
cr
ea
s
e
s
b
y
a
f
ac
to
r
o
f
x
.
T
h
e
d
ef
icien
t
M
n
4+
m
a
g
n
e
t
ic
s
ite
s
u
p
p
r
ess
es
t
h
e
p
o
s
s
ib
ili
t
y
o
f
ze
n
er
d
o
u
b
le
ex
ch
a
n
g
e
(
Z
DE
)
m
ec
h
an
i
s
m
w
h
ile
o
n
th
e
o
t
h
er
h
a
n
d
in
cr
ea
s
ed
Mn
3+
io
n
ic
d
en
s
it
y
e
n
h
an
ce
s
o
v
er
all
J
a
h
n
-
T
eller
ef
f
ec
t
w
h
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Evaluation Warning : The document was created with Spire.PDF for Python.
IJ
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R
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tivi
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etc
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[
1
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2
3
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.
4.
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p
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ll
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ter
ac
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s
b
et
w
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n
th
e
m
ag
n
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M
n
an
d
d
iam
a
g
n
et
ic
Sb
(
3
d
10
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i
o
n
s
.
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e
to
th
e
p
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o
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m
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n
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i
n
th
e
m
a
g
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o
f
th
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L
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s
a
m
p
les,
tr
a
n
s
p
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d
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m
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s
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ar
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as
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ed
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a
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eq
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r
r
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s
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m
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e
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n
to
n
ex
t
n
ea
r
es
t
Mn
-
s
ite,
in
cr
ea
s
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w
i
th
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n
cr
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s
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n
g
x
.
L
C
MSO
s
a
m
p
le
w
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ic
h
is
a
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e
f
u
l f
o
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p
o
s
s
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s
p
i
n
tr
o
n
ic
ap
p
licatio
n
s
.
RE
F
E
R
E
NC
E
S
[1
]
P
.
S
c
h
if
f
e
r,
A.
P
.
Ra
m
irez
,
W
.
Ba
o
a
n
d
S
.
W
.
Ch
e
o
n
g
,
P
h
y
s.
Rev
.
L
e
tt
.,
V
o
l
.
75
,
p
p
.
3
3
3
6
,
1
9
9
5
.
[2
]
R.
V
o
n
He
lm
o
lt
,
J.
W
e
c
k
e
r,
B.
Ho
lza
p
f
e
l,
L
.
S
c
h
u
lt
z
a
n
d
K.
S
a
m
we
r,
Ph
y
s.
Rev
.
L
e
tt
.
,
V
o
l.
71
,
p
p
.
2
3
3
1
,
1
9
9
3
.
[3
]
S
.
Jin
,
T
.
H.
T
ief
e
l,
M
.
M
e
Co
rm
a
k
,
R.
A
.
F
a
stn
a
c
h
t,
R.
Ra
m
e
sh
a
n
d
L
.
H.
Ch
e
n
,
S
c
ien
c
e
,
V
o
l.
2
6
4
,
p
p
.
4
1
3
,
1
9
9
4
.
[4
]
G.
Q.
G
o
n
g
,
C.
Ca
n
e
d
y
,
G
.
X
iao
,
J.
Z.
S
u
n
,
A
.
G
u
p
ta
a
n
d
W
.
J.
G
a
ll
a
g
h
e
r,
Ap
p
l.
P
h
y
s.
L
e
tt
.
,
Vo
l
.
67
,
p
p
.
1
7
8
3
,
1
9
9
5
.
[5
]
X
.
L
iu
,
X
.
X
u
a
n
d
Y.
Z
h
a
n
g
,
Ph
y
s.
Rev
.
,
Vo
l.
6
2
,
p
p
.
1
5
1
1
2
,
2
0
0
0
.
[6
]
V.
P.
S
.
A
wa
n
a
,
E.
S
c
h
m
it
t,
E.
Gm
e
li
n
,
A
.
G
u
p
ta,
A
.
V
.
Na
rli
k
a
r,
O.
F
.
De
L
i
m
a
,
C.
A
.
Ca
rd
o
so
,
S
.
K.
M
a
li
k
a
n
d
W
.
B.
Ye
lo
n
,
J
.
Ap
p
l.
P
h
y
s
.
,
V
o
l.
8
7
,
p
p
.
5
0
3
4
,
2
0
0
0
.
[7
]
L
.
Yu
a
n
,
Y.
Z
h
u
a
n
d
P
.
P
.
On
g
,
S
o
li
d
S
t
a
te Co
mm
u
n
.
Vo
l.
1
2
0
,
p
p
.
4
9
5
,
2
0
0
1
.
[8
]
F
.
Riv
a
d
u
ll
a
,
M
.
A
.
L
o
p
e
z
-
Qu
in
tela
,
L
.
E.
Hu
e
so
,
P
.
S
a
n
d
e
a
n
d
J.
R
iv
a
s,
Ph
y
s.
Rev
.
,
V
o
l.
6
2
,
p
p
.
5
6
7
8
,
2
0
0
0
.
[9
]
M
.
Ru
b
in
ste
i
n
,
D.
J.
G
il
les
p
ie,
J.
E.
S
n
y
d
e
r
a
n
d
T
.
M
.
T
ritt
,
Ph
y
s.
R
e
v
.
,
V
o
l.
5
6
,
p
p
.
5
4
1
2
,
1
9
9
7
.
[1
0
]
K.
H.
A
h
n
,
X
.
W
.
W
u
,
K.
L
iu
a
n
d
C.
L
.
Ch
ien
,
Ph
y
s.
Rev
.
,
V
o
l
.
5
4
,
p
p
.
1
5
2
9
9
,
1
9
9
6
.
[1
1
]
J.
S
.
Ra
th
o
d
,
Um
a
Kh
a
c
h
a
r,
R.
R.
Do
sh
i,
P
.
S
.
S
o
lan
k
i
a
n
d
D.
G
.
Ku
b
e
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a
r,
In
t.
J
.
M
o
d
.
Ph
y
s
.
,
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l.
2
4
,
p
p
.
1
2
5
0
1
3
6
,
2
0
1
2
.
[1
2
]
J.
Blas
c
o
,
J.
G
a
rc
ia,
J.
M
.
d
e
T
e
re
ss
a
,
M
.
R.
I
b
a
rra
,
J.
P
e
re
z
,
P
.
A
.
A
l
g
a
ra
b
e
l
a
n
d
C.
M
a
rq
u
in
a
,
Ph
y
s
.
Rev
.
,
V
o
l.
5
5
,
p
p
.
8
9
0
5
,
1
9
9
7
.
[1
3
]
G
.
T
u
ril
li
a
n
d
F
.
L
icc
i,
Ph
y
s.
Rev
.
,
Vo
l.
5
4
,
p
p
.
1
3
0
5
2
,
1
9
9
6
.
[1
4
]
M.
C.
S
a
n
c
h
e
z
,
J.
B
las
c
o
,
J.
G
a
rc
ia,
J.
S
tan
k
iew
icz
,
J.
M
.
d
e
T
e
re
ss
a
a
n
d
M
.
R.
I
b
a
rra
,
J
.
S
o
li
d
S
ta
te
Ch
e
m
.
,
V
o
l
.
1
3
8
,
p
p
.
2
2
6
,
1
9
9
8
.
[1
5
]
Y.
S
u
n
,
X
.
Xu
,
L
.
Z
h
e
n
g
a
n
d
Y.
Zh
a
n
g
,
P
h
y
s.
Rev
.
,
V
o
l
.
6
0
,
pp
.
1
2
3
1
7
,
1
9
9
9
.
[1
6
]
J.
P
rz
e
w
o
z
n
ik
,
J.
Ch
m
ist,
L
.
K
o
lw
icz
-
Ch
o
d
a
c
k
,
Z.
T
a
rNa
ws
k
i,
A
.
Ko
ło
d
z
iec
z
y
k
,
K.
Kro
p
,
K.
Ke
ll
n
e
r
a
n
d
G
.
G
rit
z
n
e
r,
Acta
Ph
y
s.
P
o
l
.
,
V
o
l.
1
0
6
,
p
p
.
6
6
5
,
2
0
0
4
.
[1
7
]
J.
R.
S
u
n
,
G
.
H.
Ra
o
,
B.
G
.
S
h
e
n
a
n
d
H.K.
W
o
n
g
,
Ap
p
l.
Ph
y
s.
L
e
tt
.
,
Vo
l.
7
3
,
p
p
.
2
9
9
8
,
1
9
9
8
.
[1
8
]
J.
Ro
d
rig
u
e
z
,
Ca
rv
a
jel,
FUL
L
PR
OF
v
e
rs
io
n
3
.
0
L
a
b
o
ra
t
o
rie
L
e
o
n
Bril
li
o
n
,
CEA
-
CN
RS
,
1
9
9
5
.
[1
9
]
E.
Ro
se
n
b
e
rg
,
M
.
A
u
sle
n
d
e
r,
I
.
F
e
ln
e
r,
G
.
G
o
ro
d
e
tsk
y
,
J
.
Ap
p
l.
Ph
y
s
.
,
Vo
l.
8
8
,
p
p
.
2
5
7
8
,
2
0
0
0
.
[2
0
]
D.
Ku
m
a
r,
J.
S
a
n
k
a
r,
J.
Na
ra
y
a
n
,
R.
K.
S
i
n
g
h
,
A
.
K.
M
a
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B
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Evaluation Warning : The document was created with Spire.PDF for Python.