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Determining a person's height based on the length of a femur alone is not accurate due to variations in body proportions among individuals. Femur length is just one factor in determining height, so it cannot be used as a standalone measurement to calculate a person's height.
There is no direct formula to calculate ulna bone length from a person's height. However, there are statistical models that can estimate ulna length based on height, but the accuracy may vary. Consulting a healthcare provider for a professional measurement or assessment is recommended for accurate results.
Your tank is a cylinder with hemispherical end caps. Although you said "cylindrical midsection," we will interpret that to mean the height, h, of the cylinder, which is six feet. We also infer that the radius of the sphere is equal to the radius of the cylinder, which must be the case if the tank has hemispherical end caps. So, the volume of the tank is equal to the sum of the volumes of the two hemispheres and the cylinder.The equation for the volume of a cylinder is V = pi*r2*h. If you put the two hemispheres together, you have a sphere whose volume is V = (4/3)*pi*r3.So, V = (4/3)*pi*r3 + pi*r2*h = pi*r2*(4r/3 + h),where h = 6 in this case.
The volume of a tree trunk can be estimated using the formula for the volume of a cylinder: V = πr^2h, where r is the radius and h is the height. Given the circumference (C = 2πr), we can find the radius (r = C/(2π) = 4.5/(2π)) and then calculate the volume using V = π(4.5/(2π))^2 * 13 = approximately 134.23 cubic feet.
The age of a saguaro cactus can be estimated by counting its growth rings, similar to how you would determine the age of a tree. Each ring represents a year of growth. Counting the rings at the base of the cactus can give an approximation of its age, with each arm adding around 75-100 years to the total age.
The volume of a circular cylinder varies directly with the height of the cylinder and with the square of the cylinder's radius If the height is halved and the radius is doubled then the volume will be increased.
The volume of a cylinder is represented by this formula:r2Ï€hwhere r = radius of circular baseand h = height of cylinder
The volume of a right circular cylinder with a diameter of 6.8 in and a height of 2 feet is: 871.6 cubic inches.
The volume is pi*r^2*h where r is the radius of the circular] cross section and h is the height (or length).
Volume of the cylinder: pi*radius*radius*height
Volume of a CylinderThe volume of a cylinder is the product of the area of its base and its height. Because a cylinder has a circular base, the volume of a cylinder is: Pi x r squared x hwhere r is the radius of the circular base and his the height.
A round swimming pool is a right circular cylinder, so you can use the formula pi times the radius squared times the height to calculate the volume.
First, it is not an approximation but the formula for the exact value of the volume. Second, pi and e are quite different numbers.
Assuming a circular cylinder, you use the formula pi x radius squared x height. The answer will be in cubic units, for example, cubic millimeters.
The height of this cylinder is 2.4868 cm
The flat face of a cylinder has a circular shape. Each end of the cylinder, known as the bases, is a circle that is congruent to the other. This circular face extends uniformly along the height of the cylinder.
pi * radius2 * height