Caption Here
Testing is making a preliminary version to see how features work.
#Further Testing
Page of wiki markup commands.
Amate paper
Sandbox for my scripts/robots to play in
--Mathwizard1232 00:10, 11 October 2006 (UTC)
--Mathwizard1232 00:11, 11 October 2006 (UTC) (second version)
Mathwizard 00:12, 11 October 2006 (UTC)Test the third.
Mathwizard
"Comment of the day" 00:13, 11 October 2006 (UTC)
Category:Articles that need to be wikified, how to link to, without putting in category? Hm.
Various bits of code for future reference.
Template:U.S. Representative box
Further Testing
Sometimes one might test a bit further.
Worst School Ever
Help:Displaying_a_formula
∑
m
=
1
∞
∑
n
=
1
∞
m
2
n
3
m
(
m
3
n
+
n
3
m
)
{\displaystyle \sum _{m=1}^{\infty }\sum _{n=1}^{\infty }{\frac {m^{2}\,n}{3^{m}\left(m\,3^{n}+n\,3^{m}\right)}}}
P
r
(
A
∩
B
)
P
r
(
B
)
{\displaystyle {\frac {Pr(A\cap B)}{Pr(B)}}}
A
⊂
B
{\displaystyle A\subset B}
P
r
(
A
)
P
r
(
B
)
{\displaystyle {\frac {Pr(A)}{Pr(B)}}\,\!}
P
r
(
A
|
B
)
{\displaystyle Pr(A|B)\,\!}
a
c
+
2
{\displaystyle a^{c+2}\,}
P
r
(
A
∩
B
)
{\displaystyle Pr(A\cap B)}
P
r
(
E
i
|
A
)
=
P
r
(
A
|
E
i
)
P
r
(
E
i
)
∑
j
=
1
∞
P
r
(
A
|
E
j
)
P
r
(
E
j
)
{\displaystyle Pr(E_{i}|A)={\frac {Pr(A|E_{i})Pr(E_{i})}{\sum _{j=1}^{\infty }Pr(A|E_{j})Pr(E_{j})}}}
n
!
(
n
−
k
)
!
{\displaystyle {\frac {n!}{\left(n-k\right)!}}}
n
!
n
1
!
n
2
!
.
.
.
n
m
!
{\displaystyle {\frac {n!}{n_{1}!n_{2}!...n_{m}!}}}
(
n
1
k
1
)
(
n
2
k
2
)
.
.
.
(
n
i
k
i
)
{\displaystyle {n_{1} \choose k_{1}}{n_{2} \choose k_{2}}...{n_{i} \choose k_{i}}}
(
n
n
)
t
n
+
(
n
n
−
1
)
t
n
−
1
+
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+
(
n
k
)
t
k
+
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.
.
+
(
n
1
)
t
+
(
n
0
)
{\displaystyle {n \choose n}t^{n}+{n \choose n-1}t^{n-1}+...+{n \choose k}t^{k}+...+{n \choose 1}t+{n \choose 0}}
(
n
n
1
n
2
.
.
.
n
m
)
{\displaystyle {n \choose n_{1}n_{2}\,...\,n_{m}}}
(
n
n
1
n
2
.
.
.
n
m
)
{\displaystyle {n \choose n_{1}n_{2}...n_{m}}}
(
t
1
+
t
2
+
.
.
.
+
t
m
)
n
{\displaystyle (t_{1}+t_{2}+\,...\,+t_{m})^{n}}
t
1
n
1
⋅
t
2
n
2
⋅
.
.
.
⋅
t
m
n
m
{\displaystyle t_{1}^{n_{1}}\cdot t_{2}^{n_{2}}\cdot ...\cdot t_{m}^{n_{m}}}
s
x
(
x
)
=
P
r
(
X
>
x
)
=
e
−
∫
0
x
λ
x
(
u
)
d
u
{\displaystyle s_{x}(x)=Pr(X>x)=e^{-\int \limits _{0}^{x}\lambda _{x}(u)\,du}}
λ
x
(
x
)
=
f
x
(
x
)
s
x
(
x
)
=
−
s
x
′
(
x
)
s
x
(
x
)
{\displaystyle \lambda _{x}(x)={\frac {f_{x}(x)}{s_{x}(x)}}=-{\frac {s_{x}^{\prime }(x)}{s_{x}(x)}}}
E
(
X
)
=
∑
x
∈
S
x
⋅
f
x
(
x
)
{\displaystyle E(X)=\sum _{x\in S}x\cdot f_{x}(x)}
E
(
X
)
=
∫
−
∞
∞
x
⋅
f
x
(
x
)
d
x
{\displaystyle E(X)=\int \limits _{-\infty }^{\infty }x\cdot f_{x}(x)\,dx}
E
(
h
(
X
)
)
=
∑
x
∈
S
h
(
x
)
⋅
f
x
(
x
)
{\displaystyle E(h(X))=\sum _{x\in S}h(x)\cdot f_{x}(x)}
E
(
h
(
X
)
)
=
∫
−
∞
∞
h
(
x
)
⋅
f
x
(
x
)
d
x
{\displaystyle E(h(X))=\int \limits _{-\infty }^{\infty }h(x)\cdot f_{x}(x)\,dx}
C
d
V
d
t
+
V
R
=
0
{\displaystyle C{\frac {dV}{dt}}+{\frac {V}{R}}=0}
Trying new things
Like lower headings
Bulleted lists
Subheadings
Lab report equations
L
=
r
×
p
{\displaystyle \mathbf {L} =\mathbf {r} \times \mathbf {p} }
P
=
m
v
{\displaystyle \mathbf {P} =m\mathbf {v} \,\!}
L
=
m
r
×
v
{\displaystyle \mathbf {L} =m\mathbf {r} \times \mathbf {v} }
L
{\displaystyle \mathbf {L} }
m
{\displaystyle m\,\!}
r
{\displaystyle \mathbf {r} }
v
{\displaystyle \mathbf {v} }
L
=
I
ω
{\displaystyle \mathbf {L} =I{\boldsymbol {\omega }}}
I
{\displaystyle I\,\!}
ω
{\displaystyle {\boldsymbol {\omega }}}
I
s
y
s
t
e
m
=
I
a
r
m
+
m
c
a
t
c
h
e
r
∗
r
c
a
t
c
h
e
r
2
{\displaystyle I_{system}=I_{arm}+m_{catcher}*\mathbf {r_{catcher}} ^{2}}
I
s
y
s
t
e
m
{\displaystyle I_{system}\,\!}
I
a
r
m
{\displaystyle I_{arm}\,\!}
m
c
a
t
c
h
e
r
{\displaystyle m_{catcher}\,\!}
r
c
a
t
c
h
e
r
{\displaystyle \mathbf {r_{catcher}} }
m
g
Δ
y
=
(
1
/
2
)
I
ω
2
+
(
1
/
2
)
m
(
ω
R
)
2
+
I
α
Δ
y
/
R
{\displaystyle mg\Delta y=(1/2)I\omega ^{2}+(1/2)m(\omega R)^{2}+I\alpha \Delta y/R\,\!}
m
{\displaystyle m\,\!}
Δ
y
{\displaystyle \Delta y\,\!}
g
{\displaystyle g\,\!}
I
{\displaystyle I\,\!}
ω
{\displaystyle \omega \,\!}
R
{\displaystyle R\,\!}
α
{\displaystyle \alpha \,\!}
4.63
±
0.41
m
/
s
{\displaystyle 4.63\pm 0.41~m/s}
20.5
±
0.3
c
m
{\displaystyle 20.5\pm 0.3~cm}
66.0
±
0.1
g
{\displaystyle 66.0\pm 0.1~g}
0.062
±
0.026
N
⋅
m
⋅
s
{\displaystyle 0.062\pm 0.026~N\cdot m\cdot s\,\!}
2
π
/
10
r
a
d
{\displaystyle 2\pi /10~rad\,\!}
0.42
±
0.02
N
⋅
m
⋅
s
{\displaystyle 0.42\pm 0.02~N\cdot m\cdot s\,\!}
Δ
L
=
(
Δ
I
ω
)
2
+
(
Δ
ω
I
)
2
)
{\displaystyle \Delta \mathbf {L} ={\sqrt {(\Delta I\omega )^{2}+(\Delta \omega I)^{2})}}}
5.96
±
0.01
V
{\displaystyle 5.96\pm 0.01~V}
C
{\displaystyle C}
d
V
d
t
{\displaystyle {\frac {dV}{dt}}}
V
{\displaystyle V}
R
{\displaystyle R}
Later Results
Welcome!
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Success
Then the answer is found.
de:Wikipedia:InterWiki