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- Calculus volume 3
- Multiple integration
- Calculating centers of mass and
is the disk of radius
centered at
a.
b.
and
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is the region enclosed by the ellipse
a.
b.
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is the region bounded by
a.
b.
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Let
be the solid unit cube. Find the mass of the solid if its density
is equal to the square of the distance of an arbitrary point of
to the
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The solid
of constant density
is situated inside the sphere
and outside the sphere
Show that the center of mass of the solid is not located within the solid.
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[T] The solid
has density equal to the distance to the
Use a CAS to answer the following questions.
- Find the mass of
- Find the moments
about the
and
respectively.
- Find the center of mass of
- Graph
and locate its center of mass.
a.
b.
c.
d. the solid
and its center of mass are shown in the following figure.
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Consider the solid
with the density function
- Find the mass of
- Find the moments
about the
and
respectively.
- Find the center of mass of
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[T] The solid
has the mass given by the triple integral
Use a CAS to answer the following questions.
- Show that the center of mass of
is located in the
- Graph
and locate its center of mass.
a.
b. the solid
and its center of mass are shown in the following figure.
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The solid
is bounded by the planes
Its density at any point is equal to the distance to the
Find the moments of inertia
of the solid about the
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The solid
is bounded by the planes
and
Its density is
where
Show that the center of mass of the solid is located in the plane
for any value of
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Let
be the solid situated outside the sphere
and inside the upper hemisphere
where
If the density of the solid is
find
such that the mass of the solid is
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The mass of a solid
is given by
where
is an integer. Determine
such the mass of the solid is
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Let
be the solid bounded above the cone
and below the sphere
Its density is a constant
Find
such that the center of mass of the solid is situated
units from the origin.
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The solid
has the density
Show that the moment
about the
is half of the moment
about the
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The solid
is bounded by the cylinder
the paraboloid
and the
where
Find the mass of the solid if its density is given by
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Let
be a solid of constant density
where
that is located in the first octant, inside the circular cone
and above the plane
Show that the moment
about the
is the same as the moment
about the
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The solid
has the mass given by the triple integral
- Find the density of the solid in rectangular coordinates.
- Find the moment
about the
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The solid
has the moment of inertia
about the
given by the triple integral
- Find the density of
- Find the moment of inertia
about the
a.
b.
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The solid
has the mass given by the triple integral
- Find the density of the solid in rectangular coordinates.
- Find the moment
about the
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Let
be the solid bounded by the
the cylinder
and the plane
where
is a real number. Find the moment
of the solid about the
if its density given in cylindrical coordinates is
where
is a differentiable function with the first and second derivatives continuous and differentiable on
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A solid
has a volume given by
where
is the projection of the solid onto the
and
are real numbers, and its density does not depend on the variable
Show that its center of mass lies in the plane
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Consider the solid enclosed by the cylinder
and the planes
and
where
and
are real numbers. The density of
is given by
where
is a differential function whose derivative is continuous on
Show that if
then the moment of inertia about the
of
is null.
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[T] The average density of a solid
is defined as
where
and
are the volume and the mass of
respectively. If the density of the unit ball centered at the origin is
use a CAS to find its average density. Round your answer to three decimal places.
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Show that the moments of inertia
about the
and
respectively, of the unit ball centered at the origin whose density is
are the same. Round your answer to two decimal places.
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Source:
OpenStax, Calculus volume 3. OpenStax CNX. Feb 05, 2016 Download for free at http://legacy.cnx.org/content/col11966/1.2
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