How to find the length of an edge of a tetrahedron - ISEE Upper Level Quantitative Reasoning
Card 0 of 12
A triangular pyramid, or tetrahedron, with volume 100 has four vertices with Cartesian coordinates

where
.
Evaluate
.
A triangular pyramid, or tetrahedron, with volume 100 has four vertices with Cartesian coordinates
where .
Evaluate .
The tetrahedron is as follows (figure not to scale):

This is a triangular pyramid with a right triangle with legs 10 and
as its base; the area of the base is

The height of the pyramid is 5, so

Set this equal to 100 to get
:


The tetrahedron is as follows (figure not to scale):
This is a triangular pyramid with a right triangle with legs 10 and as its base; the area of the base is
The height of the pyramid is 5, so
Set this equal to 100 to get :
Compare your answer with the correct one above
A triangular pyramid, or tetrahedron, with volume 240 has four vertices with Cartesian coordinates

where
.
Evaluate
.
A triangular pyramid, or tetrahedron, with volume 240 has four vertices with Cartesian coordinates
where .
Evaluate .
The tetrahedron is as follows (figure not to scale):

This is a triangular pyramid with a right triangle with two legs of measure
as its base; the area of the base is

The height of the pyramid is 24, so the volume is

Set this equal to 240 to get
:



The tetrahedron is as follows (figure not to scale):
This is a triangular pyramid with a right triangle with two legs of measure as its base; the area of the base is
The height of the pyramid is 24, so the volume is
Set this equal to 240 to get :
Compare your answer with the correct one above
A triangular pyramid, or tetrahedron, with volume 1,000 has four vertices with Cartesian coordinates

where
.
Evaluate
.
A triangular pyramid, or tetrahedron, with volume 1,000 has four vertices with Cartesian coordinates
where .
Evaluate .
The tetrahedron is as follows:

This is a triangular pyramid with a right triangle with two legs of measure
as its base; the area of the base is

Since the height of the pyramid is also
, the volume is
.
Set this equal to 1,000:


![n = \sqrt[3]{6,000} = \sqrt[3]{1,000} \cdot \sqrt[3]{6} = 10 \sqrt[3]{6}](https://vt-vtwa-assets.varsitytutors.com/vt-vtwa/uploads/formula_image/image/252394/gif.latex)
The tetrahedron is as follows:
This is a triangular pyramid with a right triangle with two legs of measure as its base; the area of the base is
Since the height of the pyramid is also , the volume is
.
Set this equal to 1,000:
Compare your answer with the correct one above
A triangular pyramid, or tetrahedron, with volume 100 has four vertices with Cartesian coordinates

where
.
Evaluate
.
A triangular pyramid, or tetrahedron, with volume 100 has four vertices with Cartesian coordinates
where .
Evaluate .
The tetrahedron is as follows (figure not to scale):

This is a triangular pyramid with a right triangle with legs 10 and
as its base; the area of the base is

The height of the pyramid is 5, so

Set this equal to 100 to get
:


The tetrahedron is as follows (figure not to scale):
This is a triangular pyramid with a right triangle with legs 10 and as its base; the area of the base is
The height of the pyramid is 5, so
Set this equal to 100 to get :
Compare your answer with the correct one above
A triangular pyramid, or tetrahedron, with volume 240 has four vertices with Cartesian coordinates

where
.
Evaluate
.
A triangular pyramid, or tetrahedron, with volume 240 has four vertices with Cartesian coordinates
where .
Evaluate .
The tetrahedron is as follows (figure not to scale):

This is a triangular pyramid with a right triangle with two legs of measure
as its base; the area of the base is

The height of the pyramid is 24, so the volume is

Set this equal to 240 to get
:



The tetrahedron is as follows (figure not to scale):
This is a triangular pyramid with a right triangle with two legs of measure as its base; the area of the base is
The height of the pyramid is 24, so the volume is
Set this equal to 240 to get :
Compare your answer with the correct one above
A triangular pyramid, or tetrahedron, with volume 1,000 has four vertices with Cartesian coordinates

where
.
Evaluate
.
A triangular pyramid, or tetrahedron, with volume 1,000 has four vertices with Cartesian coordinates
where .
Evaluate .
The tetrahedron is as follows:

This is a triangular pyramid with a right triangle with two legs of measure
as its base; the area of the base is

Since the height of the pyramid is also
, the volume is
.
Set this equal to 1,000:


![n = \sqrt[3]{6,000} = \sqrt[3]{1,000} \cdot \sqrt[3]{6} = 10 \sqrt[3]{6}](https://vt-vtwa-assets.varsitytutors.com/vt-vtwa/uploads/formula_image/image/252394/gif.latex)
The tetrahedron is as follows:
This is a triangular pyramid with a right triangle with two legs of measure as its base; the area of the base is
Since the height of the pyramid is also , the volume is
.
Set this equal to 1,000:
Compare your answer with the correct one above
A triangular pyramid, or tetrahedron, with volume 100 has four vertices with Cartesian coordinates

where
.
Evaluate
.
A triangular pyramid, or tetrahedron, with volume 100 has four vertices with Cartesian coordinates
where .
Evaluate .
The tetrahedron is as follows (figure not to scale):

This is a triangular pyramid with a right triangle with legs 10 and
as its base; the area of the base is

The height of the pyramid is 5, so

Set this equal to 100 to get
:


The tetrahedron is as follows (figure not to scale):
This is a triangular pyramid with a right triangle with legs 10 and as its base; the area of the base is
The height of the pyramid is 5, so
Set this equal to 100 to get :
Compare your answer with the correct one above
A triangular pyramid, or tetrahedron, with volume 240 has four vertices with Cartesian coordinates

where
.
Evaluate
.
A triangular pyramid, or tetrahedron, with volume 240 has four vertices with Cartesian coordinates
where .
Evaluate .
The tetrahedron is as follows (figure not to scale):

This is a triangular pyramid with a right triangle with two legs of measure
as its base; the area of the base is

The height of the pyramid is 24, so the volume is

Set this equal to 240 to get
:



The tetrahedron is as follows (figure not to scale):
This is a triangular pyramid with a right triangle with two legs of measure as its base; the area of the base is
The height of the pyramid is 24, so the volume is
Set this equal to 240 to get :
Compare your answer with the correct one above
A triangular pyramid, or tetrahedron, with volume 1,000 has four vertices with Cartesian coordinates

where
.
Evaluate
.
A triangular pyramid, or tetrahedron, with volume 1,000 has four vertices with Cartesian coordinates
where .
Evaluate .
The tetrahedron is as follows:

This is a triangular pyramid with a right triangle with two legs of measure
as its base; the area of the base is

Since the height of the pyramid is also
, the volume is
.
Set this equal to 1,000:


![n = \sqrt[3]{6,000} = \sqrt[3]{1,000} \cdot \sqrt[3]{6} = 10 \sqrt[3]{6}](https://vt-vtwa-assets.varsitytutors.com/vt-vtwa/uploads/formula_image/image/252394/gif.latex)
The tetrahedron is as follows:
This is a triangular pyramid with a right triangle with two legs of measure as its base; the area of the base is
Since the height of the pyramid is also , the volume is
.
Set this equal to 1,000:
Compare your answer with the correct one above
A triangular pyramid, or tetrahedron, with volume 100 has four vertices with Cartesian coordinates

where
.
Evaluate
.
A triangular pyramid, or tetrahedron, with volume 100 has four vertices with Cartesian coordinates
where .
Evaluate .
The tetrahedron is as follows (figure not to scale):

This is a triangular pyramid with a right triangle with legs 10 and
as its base; the area of the base is

The height of the pyramid is 5, so

Set this equal to 100 to get
:


The tetrahedron is as follows (figure not to scale):
This is a triangular pyramid with a right triangle with legs 10 and as its base; the area of the base is
The height of the pyramid is 5, so
Set this equal to 100 to get :
Compare your answer with the correct one above
A triangular pyramid, or tetrahedron, with volume 240 has four vertices with Cartesian coordinates

where
.
Evaluate
.
A triangular pyramid, or tetrahedron, with volume 240 has four vertices with Cartesian coordinates
where .
Evaluate .
The tetrahedron is as follows (figure not to scale):

This is a triangular pyramid with a right triangle with two legs of measure
as its base; the area of the base is

The height of the pyramid is 24, so the volume is

Set this equal to 240 to get
:



The tetrahedron is as follows (figure not to scale):
This is a triangular pyramid with a right triangle with two legs of measure as its base; the area of the base is
The height of the pyramid is 24, so the volume is
Set this equal to 240 to get :
Compare your answer with the correct one above
A triangular pyramid, or tetrahedron, with volume 1,000 has four vertices with Cartesian coordinates

where
.
Evaluate
.
A triangular pyramid, or tetrahedron, with volume 1,000 has four vertices with Cartesian coordinates
where .
Evaluate .
The tetrahedron is as follows:

This is a triangular pyramid with a right triangle with two legs of measure
as its base; the area of the base is

Since the height of the pyramid is also
, the volume is
.
Set this equal to 1,000:


![n = \sqrt[3]{6,000} = \sqrt[3]{1,000} \cdot \sqrt[3]{6} = 10 \sqrt[3]{6}](https://vt-vtwa-assets.varsitytutors.com/vt-vtwa/uploads/formula_image/image/252394/gif.latex)
The tetrahedron is as follows:
This is a triangular pyramid with a right triangle with two legs of measure as its base; the area of the base is
Since the height of the pyramid is also , the volume is
.
Set this equal to 1,000:
Compare your answer with the correct one above