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Notations
Notations L
Notations N
Notations M
♦
*
♦
A
♦
B
♦
C
♦
D
♦
E
♦
F
♦
G
♦
H
♦
I
♦
J
♦
K
♦
L
♦M♦
N
♦
O
♦
P
♦
Q
♦
R
♦
S
♦
T
♦
U
♦
V
♦
W
♦
X
♦
Y
♦
Z
♦
m
e
mass of electron;
§18.39(ii)
M
(
n
)
Motzkin number;
(26.6.2)
𝖬
(
x
)
Mills’ ratio;
(7.8.1)
M
(
z
)
Airy modulus function;
(9.8.3)
ℳ
κ
,
μ
=
M
κ
,
μ
(
z
)
/
Γ
(
1
+
2
μ
)
notation used by
Buchholz (
1969
)
;
§13.1
(with
Γ
(
z
)
: gamma function
and
M
κ
,
μ
(
z
)
: Whittaker confluent hypergeometric function
)
M
κ
,
μ
(
z
)
Whittaker confluent hypergeometric function;
(13.14.2)
M
ν
(
x
)
modulus of Bessel functions;
(10.18.1)
𝐌
ν
(
z
)
modified Struve function;
(11.2.6)
M
(
a
,
g
)
arithmetic-geometric mean;
§19.8(i)
ℳ
(
f
)
(
s
)
Mellin transform;
(1.14.32)
M
ℓ
(
η
,
ρ
)
envelope of Coulomb functions;
(33.3.1)
M
ν
(
j
)
(
z
,
h
)
modified Mathieu function;
§28.20(iii)
M
(
a
,
b
,
z
)
=
F
1
1
(
a
;
b
;
z
)
Kummer confluent hypergeometric function;
(13.2.2)
𝐌
(
a
,
b
,
z
)
Olver’s confluent hypergeometric function;
(13.2.3)
M
n
(
x
;
β
,
c
)
Meixner polynomial;
Table 18.19.1
maj
major index;
§26.14(i)
Mc
n
(
j
)
(
z
,
h
)
radial Mathieu function;
(28.20.15)
me
n
(
z
,
q
)
Mathieu function;
§28.12(ii)
me
ν
(
z
,
q
)
Mathieu function of noninteger order;
§28.12(ii)
Me
ν
(
z
,
q
)
modified Mathieu function;
(28.20.5)
Me
n
(
1
,
2
)
(
z
,
q
)
=
1
2
π
g
e
,
n
(
h
)
ce
n
(
0
,
q
)
Mc
n
(
3
,
4
)
(
z
,
h
)
notation used by
Arscott (
1964b
)
,
McLachlan (
1947
)
;
§28.1
(with
ce
n
(
z
,
q
)
: Mathieu function
,
π
: the ratio of the circumference of a circle to its diameter
and
Mc
n
(
j
)
(
z
,
h
)
: radial Mathieu function
)
mod
modulo;
Common Notations and Definitions
Ms
n
(
j
)
(
z
,
h
)
radial Mathieu function;
(28.20.16)
μ
(
n
)
Möbius function;
(27.2.12)