The distance from the vertex of a right cone to a point on the edge of the base.
Slant Height
The volume of the Cylinder.
Use pi, round to nearest tenth.
603.2 ft3
The volume of the cone. To nearest tenth. Use pi.
12.6 ft3
Find the volume, to nearest tenth, of a sphere with a diameter of 10 ft. Give answer to the nearest tenth.
Use 3.14 for pi.
523.3 ft3
What is 82?
64
A three-dimensional figure with two parallel, congruent circular bases connected by a curved lateral surface.
Cylinder
The volume of the Cylinder.
Use pi, round to nearest tenth.
942.5 in3
Volume of the cone. Round to the nearest tenth
942.5 cm3
Find the volume round to nearest tenth, of a circle with a diameter of 7 cm. Give answer to the nearest tenth.
Use 3.14 for pi.
179.5 cm3
a2 + b2 =
c2
It has a vertex and one base.
Cone
Cylinder with a radius of 4 km and a height of 5 km.
Use 3.14 as pi.
251.2 km3
Volume of a traffic cone, in cubic inches, with height of 24 inches and diameter of 10 inches.
Use 3.14 for pi.
628 in3
Find the volume of the sphere. Round to nearest tenth.
Use 3.14 for pi.
d = 36 m
24,416.6 m3
5x + 2 = 12
x=2
A round three-dimensional figure with a central point and all points whose distance from the center is less than or equal to the radius.
Sphere
Find the volume. Use 3.14 as pi.
3014.4 in3
If a cone has a volume of 348in3, what would be the volume of a sphere with the same radius?
696in3
Find the volume. Use pi key.
Round to the nearest tenth.
2144.7 m3
What is the missing side? a=5 c=13
hint: Pythagorean theorem: sides of a right triangle
b=12
The slant height can also be called the...
hint: Pythagorean Theorem: the longest side on a right triangle
Hypotenuse
A cylinder has a radius of 7ft and a volume of 2307.9 ft3. Determine the height, in feet, of the cylinder. Round to the nearest foot.
15 ft.
If a cylinder has a volume of
96.39 ft^3
, what would the volume of a cone have with the same height and radius?
32.13 ft^3
Find the volume. Use pi.
Round to the nearest tenth.
38792.4 cm3
What days will be doing ACAP testing?
April 4-6