No.
The two triangles shown are similar triangles. Numerically, the ratio computed by dividing the length of any side of tower triangle by the length of the corresponding side of the walking stick (similar) triangle will be the same value. Therefore, when the length of the tower shadow is divided by the length of the walking stick shadow, that ratio will be the exactly same as the tower height divided by the walking stick height. (length of tower shadow)/(length of walking stick shadow) = (tower's height)/(walking stick height) tower's height = {(length of tower shadow)/(length of walking stick shadow)}*(walking stick height)
To measure wind speed.An anemometer measures the speed of wind, and is seen on almost every Air traffic Control Tower.An anemometer measures the speed of wind, and is seen on almost every Air traffic Control Tower.
1000 Centimetres = 32.81000 Feet Which makes a very large box! Tower (box?) comes in several sizes, so there is no fixed size - which would be length x width x depth, and the size of motherboard it will accommodate.
In the old testament book of Genesis, chapter 11 you can read about the Tower of Babel. The people that lived then wanted to build a tower that would reach to the heavens. They wanted to make a name for themselves. Everyone spoke the same language and they had the ability to build a great tower and God knew that if he made them all speak different languages, they would not be able to communicate and build the tower.
To determine how many nickels would be needed to make a tower 100 inches tall, we first need to know the thickness of a nickel, which is approximately 1.95 millimeters (or about 0.077 inches). Dividing 100 inches by the thickness of a nickel (0.077 inches) gives roughly 1,298 nickels. Therefore, you would need about 1,298 nickels to create a tower that is 100 inches tall.
It would depend on what property of the tower you wished to measure.
trigonometric ratios for example you need at least 2 lenghts and 1 angle
Gallon
She is the ruler of Rōran.
Pierre labia
You could use a spring scale or a force gauge to measure the force needed to pull a block out of a block tower. The scale would provide a reading in units of force, such as newtons or pounds, indicating the amount of force required to remove the block from the tower.
Since water towers generally have a very large capacity, I would say that cubic meters might be the best bet. You can measure the total volumetric capacity of the water tower in cubic meters and then determine the volume of water that is currently in the water tower. However, an amount of water can also be measured in liters.
he is searching for unown in the cave near celestial tower
A Water Tower
80000000
mercury is so small that they can't totally measure it.
the Eiffel tower is a definite frame. if the tower had something over the frame it would be a mass so the Eiffel tower would never be a shell if it had the framing still inside of it.