A volume of water in Earth's oceans is, according to Wikipedia, 1 320 000 000 km³.
You could calculate how many drops is that if you could provide any definition of 'drop' unit.
Also, oceans do cover 77% of Earth's surface and the 23% is land.
The height of an object above Earth's surface is known as its altitude or elevation. It is typically measured in units such as meters or feet from the surface of the Earth to the object. This measurement is important in fields such as aviation, geography, and geology.
9.81 is the acceleration due to the force of gravity experienced by bodies on or about the surface of the earth (nominally at sea level) the units are meters per second / per second, that is to say a stone dropped from a height will gain 9.81 m/s velocity for every second it falls (is in freefall) however , if you move from the earths surface , this figure will diminish, an example being : if you double your distance from the earths centre you will experience 1/4 of the acceleration (or force) you experienced at the surface
9.81 m/s2 gravity is dependant on the total mass of the two bodies, and the distance between their mass centers, and irrespective of any motion or rotation on earth, their would be a very small acceleration due to rotation about the earths axis (0 at the poles , maximum at the equator) , but this is a totally seperate issue
If you have a known rate of acceleration and radius (such as at the earths surface), you can use the following equation to calculate the acceleration at another radius.a = k / ((d / r)^2)key:a = new acceleration rate ((m/s)/s)d = new radius (metres)k = known acceleration rate ((m/s)/s)r = known radius (metres)so if:d = 9 000 000 metresk = 9.82 (m/s)/s (acceleration at earths surface)r = 6 371 000 metres (radius at earths surface)then:a = 4.92 (m/s)/s
Red light does not penetrate 70 meters beneath the ocean surface as it is quickly absorbed by water molecules.
The surface area of the sun is about 6.088 X 10 to the 18th meters squared, or the equivalent of 11,900 earths. the sun is made of gases
3 sq meters
No. Saturn's rings are only 20 meters thick on average.
The approximate acceleration of a body in freefall near the earths surface due to earths gravitational pull. The object in freefall gains 9.81 meters per second for every second that elapses (ignoring air resistance).
The term for the height above sea level on a point on Earth's surface is elevation. It is commonly measured in meters or feet.
The peritoneum is a membrane that lines the abdominal cavity and covers the abdominal organs, with a surface area of approximately 1.7 square meters. While this area is significant, it does not equate to the entire surface area of the human body, which averages around 1.5 to 2.0 square meters in adults. Thus, the peritoneum's surface area is substantial but is not equivalent to the total body surface area.
Divide the distance by the time. That will give you the speed in kilometers/hour. Then divide that by 3.6 to convert to meters/second.
elevation
The height of an object above Earth's surface is known as its altitude or elevation. It is typically measured in units such as meters or feet from the surface of the Earth to the object. This measurement is important in fields such as aviation, geography, and geology.
Yes, altitude is a measure of height above Earth's surface, typically measured in feet or meters. It can be used to indicate how high an object is located in relation to sea level or ground level.
The structure of the body with the largest surface area is the skin. As the body's largest organ, the skin covers an average area of about 1.5 to 2 square meters in adults, depending on factors like size and body composition. The skin plays a crucial role in protecting underlying tissues, regulating temperature, and facilitating sensory perception.
The average elevation of the Earth's land surface is approximately 840 meters (2,755 feet) above sea level. However, this value can vary significantly based on geographic features, such as mountains and valleys. The average sea level itself is considered to be zero meters, serving as a baseline for measuring elevation.