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How to use it?
Limit of the function
:
Limit of ((3+x)^2+(3-x)^2)/((3-x)^2-(3+x)^2)
Limit of (1-log(7*x))^(7*x)
Limit of (1-3*x)^(1/x)
Limit of (x/(1+2*x))^x
Derivative of
:
x*sin(x)
Graphing y =
:
x*sin(x)
Integral of d{x}
:
x*sin(x)
Identical expressions
x*sin(x)
x multiply by sinus of (x)
xsin(x)
xsinx
Similar expressions
cot(3*x)*sin(x)/cos(5*x)
log(x)/(1+2*log(x)*sin(x))
cos(4*x)*sin(x)/(cot(5*x)*sin(2*x))
log(x)*sin(x)
cot(x)*log(x)*sin(x)
x*sinx
Limit of the function
/
x*sin(x)
Limit of the function x*sin(x)
at
→
Calculate the limit!
v
For end points:
---------
From the left (x0-)
From the right (x0+)
The graph:
from
to
Piecewise:
{
enter the piecewise function here
The solution
You have entered
[src]
lim (x*sin(x)) x->oo
lim
x
→
∞
(
x
sin
(
x
)
)
\lim_{x \to \infty}\left(x \sin{\left(x \right)}\right)
x
→
∞
lim
(
x
sin
(
x
)
)
Limit(x*sin(x), x, oo, dir='-')
Lopital's rule
There is no sense to apply Lopital's rule to this function since there is no indeterminateness of 0/0 or oo/oo type
The graph
0
2
4
6
8
-8
-6
-4
-2
-10
10
-10
10
Plot the graph
Other limits x→0, -oo, +oo, 1
lim
x
→
∞
(
x
sin
(
x
)
)
=
⟨
−
∞
,
∞
⟩
\lim_{x \to \infty}\left(x \sin{\left(x \right)}\right) = \left\langle -\infty, \infty\right\rangle
x
→
∞
lim
(
x
sin
(
x
)
)
=
⟨
−
∞
,
∞
⟩
lim
x
→
0
−
(
x
sin
(
x
)
)
=
0
\lim_{x \to 0^-}\left(x \sin{\left(x \right)}\right) = 0
x
→
0
−
lim
(
x
sin
(
x
)
)
=
0
More at x→0 from the left
lim
x
→
0
+
(
x
sin
(
x
)
)
=
0
\lim_{x \to 0^+}\left(x \sin{\left(x \right)}\right) = 0
x
→
0
+
lim
(
x
sin
(
x
)
)
=
0
More at x→0 from the right
lim
x
→
1
−
(
x
sin
(
x
)
)
=
sin
(
1
)
\lim_{x \to 1^-}\left(x \sin{\left(x \right)}\right) = \sin{\left(1 \right)}
x
→
1
−
lim
(
x
sin
(
x
)
)
=
sin
(
1
)
More at x→1 from the left
lim
x
→
1
+
(
x
sin
(
x
)
)
=
sin
(
1
)
\lim_{x \to 1^+}\left(x \sin{\left(x \right)}\right) = \sin{\left(1 \right)}
x
→
1
+
lim
(
x
sin
(
x
)
)
=
sin
(
1
)
More at x→1 from the right
lim
x
→
−
∞
(
x
sin
(
x
)
)
=
⟨
−
∞
,
∞
⟩
\lim_{x \to -\infty}\left(x \sin{\left(x \right)}\right) = \left\langle -\infty, \infty\right\rangle
x
→
−
∞
lim
(
x
sin
(
x
)
)
=
⟨
−
∞
,
∞
⟩
More at x→-oo
Rapid solution
[src]
<-oo, oo>
⟨
−
∞
,
∞
⟩
\left\langle -\infty, \infty\right\rangle
⟨
−
∞
,
∞
⟩
Expand and simplify
The graph