Areas and Perimeters of Polygons - SSAT Upper Level Quantitative
Card 0 of 440
Find the area of a regular hexagon that has side lengths of
.
Find the area of a regular hexagon that has side lengths of .
Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.



Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.
Compare your answer with the correct one above
Find the area of a regular hexagon that has a side length of
.
Find the area of a regular hexagon that has a side length of .
Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.



Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.
Compare your answer with the correct one above
Find the area of a regular hexagon that has a side length of
.
Find the area of a regular hexagon that has a side length of .
Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.



Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.
Compare your answer with the correct one above
Find the area of a regular hexagon that has side lengths of
.
Find the area of a regular hexagon that has side lengths of .
Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.



Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.
Compare your answer with the correct one above
Find the area of a regular hexagon that has side lengths of
.
Find the area of a regular hexagon that has side lengths of .
Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.



Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.
Compare your answer with the correct one above
Find the area of a regular hexagon with side lengths
.
Find the area of a regular hexagon with side lengths .
Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.



Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.
Compare your answer with the correct one above
Find the area of a regular hexagon that has side lengths of
.
Find the area of a regular hexagon that has side lengths of .
Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.


Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.
Compare your answer with the correct one above
Find the area of a regular hexagon with side lengths of
.
Find the area of a regular hexagon with side lengths of .
Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.



Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.
Compare your answer with the correct one above
Find the area of a regular hexagon with side lengths of
.
Find the area of a regular hexagon with side lengths of .
Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.



Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.
Compare your answer with the correct one above
Find the area of a regular hexagon with side lengths of
.
Find the area of a regular hexagon with side lengths of .
Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.



Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.
Compare your answer with the correct one above
Find the area of a regular hexagon with side lengths of
.
Find the area of a regular hexagon with side lengths of .
Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.



Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.
Compare your answer with the correct one above
Find the area of a regular hexagon with side lengths
.
Find the area of a regular hexagon with side lengths .
Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.



Use the following formula to find the area of a regular hexagon:
.
Now, substitute in the length of the side into this equation.
Compare your answer with the correct one above
A parallelogram has the base length of
and the altitude of
. Give the area of the parallelogram.
A parallelogram has the base length of and the altitude of
. Give the area of the parallelogram.
The area of a parallelogram is given by:

Where
is the base length and
is the corresponding altitude. So we can write:

The area of a parallelogram is given by:
Where is the base length and
is the corresponding altitude. So we can write:
Compare your answer with the correct one above
A parallelogram has a base length of
which is 3 times longer than its corresponding altitude. The area of the parallelogram is 12 square inches. Give the
.
A parallelogram has a base length of which is 3 times longer than its corresponding altitude. The area of the parallelogram is 12 square inches. Give the
.
Base length is
so the corresponding altitude is
.
The area of a parallelogram is given by:

Where:
is the length of any base
is the corresponding altitude
So we can write:




Base length is so the corresponding altitude is
.
The area of a parallelogram is given by:
Where:
is the length of any base
is the corresponding altitude
So we can write:
Compare your answer with the correct one above
The length of the shorter diagonal of a rhombus is 40% that of the longer diagonal. The area of the rhombus is
. Give the length of the longer diagonal in terms of
.
The length of the shorter diagonal of a rhombus is 40% that of the longer diagonal. The area of the rhombus is . Give the length of the longer diagonal in terms of
.
Let
be the length of the longer diagonal. Then the shorter diagonal has length 40% of this. Since 40% is equal to
, 40% of
is equal to
.
The area of a rhombus is half the product of the lengths of its diagonals, so we can set up, and solve for
, in the equation:





Let be the length of the longer diagonal. Then the shorter diagonal has length 40% of this. Since 40% is equal to
, 40% of
is equal to
.
The area of a rhombus is half the product of the lengths of its diagonals, so we can set up, and solve for , in the equation:
Compare your answer with the correct one above
The length of the shorter diagonal of a rhombus is two-thirds that of the longer diagonal. The area of the rhombus is
square yards. Give the length of the longer diagonal, in inches, in terms of
.
The length of the shorter diagonal of a rhombus is two-thirds that of the longer diagonal. The area of the rhombus is square yards. Give the length of the longer diagonal, in inches, in terms of
.
Let
be the length of the longer diagonal in yards. Then the shorter diagonal has length two-thirds of this, or
.
The area of a rhombus is half the product of the lengths of its diagonals, so we can set up the following equation and solve for
:





To convert yards to inches, multiply by 36:

Let be the length of the longer diagonal in yards. Then the shorter diagonal has length two-thirds of this, or
.
The area of a rhombus is half the product of the lengths of its diagonals, so we can set up the following equation and solve for :
To convert yards to inches, multiply by 36:
Compare your answer with the correct one above
The longer diagonal of a rhombus is 20% longer than the shorter diagonal; the rhombus has area
. Give the length of the shorter diagonal in terms of
.
The longer diagonal of a rhombus is 20% longer than the shorter diagonal; the rhombus has area . Give the length of the shorter diagonal in terms of
.
Let
be the length of the shorter diagonal. If the longer diagonal is 20% longer, then it measures 120% of the length of the shorter diagonal; this is

of
, or
.
The area of a rhombus is half the product of the lengths of its diagonals, so we can set up an equation and solve for
:





Let be the length of the shorter diagonal. If the longer diagonal is 20% longer, then it measures 120% of the length of the shorter diagonal; this is
of , or
.
The area of a rhombus is half the product of the lengths of its diagonals, so we can set up an equation and solve for :
Compare your answer with the correct one above
Which of the following shapes is NOT a quadrilateral?
Which of the following shapes is NOT a quadrilateral?
A quadrilateral is any two-dimensional shape with
sides. The only shape listed that does not have
sides is a triangle.
A quadrilateral is any two-dimensional shape with sides. The only shape listed that does not have
sides is a triangle.
Compare your answer with the correct one above
What other shape can a parallelogram be classified as?
What other shape can a parallelogram be classified as?
A parallelogram can not be classified as a square because a square has to have
equal sides, but a parallelogram can have two different side lengths, as long as the opposite side lengths are equal.
A parallelogram can not be classified as a rectangle because a rectangle has to have
angles, and a parallelogram does not.
A parallelogram can not be classified as a triangle because a parallelogram has to have
sides and a triangle only has
sides.
A parallelogram can not be classified as a rhombus because a rhombus has to have
equal sides and a parallelogram does not.
A parallelogram has four sides, and all shapes with four sides are quadrilaterals.
A parallelogram can not be classified as a square because a square has to have equal sides, but a parallelogram can have two different side lengths, as long as the opposite side lengths are equal.
A parallelogram can not be classified as a rectangle because a rectangle has to have angles, and a parallelogram does not.
A parallelogram can not be classified as a triangle because a parallelogram has to have sides and a triangle only has
sides.
A parallelogram can not be classified as a rhombus because a rhombus has to have equal sides and a parallelogram does not.
A parallelogram has four sides, and all shapes with four sides are quadrilaterals.
Compare your answer with the correct one above
What is the main difference between a square and a rectangle?
What is the main difference between a square and a rectangle?
The only difference between a rectangle and a square is their side lengths. A square has to have
equal side lengths, but the opposite side lengths of a rectangle only have to be equal.
The only difference between a rectangle and a square is their side lengths. A square has to have equal side lengths, but the opposite side lengths of a rectangle only have to be equal.
Compare your answer with the correct one above