The distance between two points is: square root of [(x1-x2)^2 plus (y1-y2)^2] An exact answer could have been given if the points were properly enumerated.
If you mean points of: (2, 5) and (-4, 8) Distance is the square root of (2--4)^2+(5-8)^2 = 6.708 rounded
square root of (5-9)^2+(1+6)^2
square root of (5-9)^2+(1+6)^2
Distance: square root of [(4-7)squared+(6--3)squared)] = 3 times sq rt of 10 which is about 9.487 rounded
Distance = (9-5)2+(-6-1)2 = 65 and the square root of this is the distance between the points which is about 8.062257748
The distance between two points is: square root of [(x1-x2)^2 plus (y1-y2)^2] An exact answer could have been given if the points were properly enumerated.
If you mean points of: (2, 5) and (-4, 8) Distance is the square root of (2--4)^2+(5-8)^2 = 6.708 rounded
square root of (5-9)^2+(1+6)^2
square root of (5-9)^2+(1+6)^2
73
Distance: square root of [(4-7)squared+(6--3)squared)] = 3 times sq rt of 10 which is about 9.487 rounded
the area of a rectangle with width x and length 6x is 6x^2 what does the coefficient 6 mean in terms of the problem
square root of (5-9)^2+(1+6)^2
Distance = sqrt(x2 + y2)
Yes, wavelength can be measured between corresponding points on two adjacent waves, such as measuring the distance between two consecutive wave peaks or troughs. This measurement gives an indication of the distance the wave travels in one complete cycle.
im pretty sure if you get google earth you can use one of the tools to find the distance between two points dont know if it gives you air miles or land though