... is called a Great Circle arc.
Sometimes you do, sometimes you don't. In the Euclidean plane. a straight line is the shortest distance between two points. Also, the equation of a straight line is simpler than that of curved lines. Finally, there is the Occam Rule which can be put as follows: when there are lots of possibilities to choose from, go for the simplest one. There are infinitely many curves (including a straight line) that can go through a pair of points.
No. The formula for the area of a rectangle, the easiest to measure, goes as follows goes as follows: X=distance of side A Y=distance of side B A=area of figure Now, the formula is:(X)(Y)=A for other figures you convert them into triangles where you can use (Base)(height) divided by 2=A this is called triangulation.
The distance between Ndola and Kafulafuta is approximately 30 kilometers. This route primarily follows the main road connecting the two locations, making it accessible for travel. The journey typically takes around 30 to 45 minutes by car, depending on traffic conditions.
consecutive; one follows the other with no others in between
By unit of length and distance and conversion ,we can say that 1 km=10000 dm
An imaginary line that follows the curve of the Earth is called a great circle. It represents the shortest distance between two points on the Earth's surface and is often used in navigation and mapping.
The imaginary line that follows the curve of the Earth and is the shortest route for pilots is called a great circle route. This route is the most efficient way to travel between two points on the Earth's surface, as it represents the shortest path over the Earth's surface, given its spherical shape. Pilots often use great circle routes to save time and fuel during long-distance flights.
The imaginary line between a planet and the sun is called the planet's orbit. This orbit is the path that a planet follows as it revolves around the sun, due to gravitational forces. The shape and size of the orbit is determined by the planet's velocity and distance from the sun.
The geodesic solution is a mathematical concept used to find the shortest path between two points on a curved surface. It involves calculating the path that follows the curvature of the surface and minimizes the distance traveled between the two points.
The shortest route between two points on the surface of a planet, when routes are limited to the planet's surface, is the arc of the great circle that connects the two points. The shortest route between two points anywhere, without regard to intervening matter or energy preventing the route from being followed, is always the line connecting the two points.
Actually, this turns out to be more of a debate than you might think. Historically, most of us were taught the shortest distance between two points is a straight line; that is a principle of Euclid's geometry. But not everyone agrees with Euclid, and there are other types of geometry. For example, because the Earth is a sphere, and not flat as distance maps portray it, that is why some scientists say that the shortest distance is actually a sphere or a curve (in other words, the distance would be measured by following the Earth's contours).
it is the ORBIT, I think...
distance between them. As the distance between the objects decreases, the gravitational force increases. This force follows Newton's law of universal gravitation.
The electrical force between charges decreases as the distance between them increases. This is because the force follows an inverse square law relationship with distance, meaning that it weakens proportionally to the square of the distance between the charges.
a straight line ^Wrong. A straight line is NOT the shortest distance between two places when you're on a globe. http://en.wikipedia.org/wiki/Great_circle This is mathematically proven using calculus. Another way to prove this is to take a globe, and get some string. Pick two points, and make a straight line with the string to measure the distance. Cut off the extra string so you are using the exact amount needed for a straight line. Now, use the great circle, and you will be able to reach the same point, and have extra string left over, proving that the great circle is shorter than the straight line.
The magnetic force between two magnets decreases as the distance between them increases. This relationship follows an inverse square law, meaning that the force decreases rapidly as the distance increases.
Mars follows an elliptical orbit, so the distance between it and the sun varies. However, the average distance between the two objects is 207 million km, or 1.38 astronomical units, or 128,279,014.03 miles.