5 inches is 2 1/2 times 2 inches. Therefore the answer is 2 1/2 x 25 = 62 .5 miles = 5 inches ( that is 1 inch = 12.5 miles x 5 )
The overall stopping distance would be around 122m (400ft) This is made up of a thinking distance of 24m (79ft) and an actual stopping distance of 98m (321ft). The thinking distance is around 3m for every 10mph of speed and the overall stopping distance is calculated as follows: 2x20 ft at 20mph 2.5x30 ft at 30mph 3x40 ft at 40mph 3.5x50 ft at 50mph 4x60 ft at 60mph 4.5x70 at 70mph 5x80 at 80mph = 400 ft james s
Well, isn't that a happy little question! Two and a half feet is the same as 30 inches. Just imagine all the beautiful little details you could paint with that measurement. Happy painting!
The points are all the same distance from the center of the circle. The distance between the center and any point is the radius of the circle.
Because the diagonal would be the hypotenuse of a right triangle, its length is the square root of the sum of 802 square inches and 602 square inches, which is exactly 100 inches.A quicker and easier way to determine the length of the diagonal is to recognize right away that you are working with a 3-4-5 right triangle, one of the classic forms used a lot in education, especially appealing because the length of every side is a whole number. The one in this problem is scaled by a factor of 20, but if you recognize the 3 to 4 ratio between the sides or the 3 to 5 or 4 to 5 ratios between a side and the hypotenuse, your work becomes a lot easier.
False
On a planimetric map, the scale indicates the ratio of distance on the map to the actual distance on the ground. It typically expresses this relationship in terms of inches per mile, allowing users to understand how many inches on the map correspond to a real-mile distance. For example, a scale of 1 inch to 1 mile means that each inch on the map represents one mile in reality. This helps users accurately measure distances and navigate using the map.
A scale, usually in the corners, is used to determine distances on a map. It shows how much the map has been scaled down from the actual size of the place. For example, if the scale read 1cm = 150km, you would interpret that for every Centimeter on the map, 150 km is covered
Scale
A scale, usually in the corners, is used to determine distances on a map. It shows how much the map has been scaled down from the actual size of the place. For example, if the scale read 1cm = 150km, you would interpret that for every Centimeter on the map, 150 km is covered
scale
On a planimetric map, the scale indicates the relationship between distance on the map and the corresponding distance in the real world. For example, if the scale shows that 1 inch on the map represents 1 mile in reality, it means that for every inch you measure on the map, you can expect that distance to equal one mile in the actual terrain. This scale helps users accurately interpret distances when navigating or analyzing the mapped area.
If the scale is 1 centimeter to 1 kilometer, then the actual distance represented by the scale distance would be 1 kilometer for every 1 centimeter on the map. This means that if you measure a distance of, say, 5 centimeters on the map using this scale, the actual distance in real life would be 5 kilometers.
The term for the relationship between the distance on the map and actual distance is the "scale"For example, the scale may be 1 inch equals 10 miles.So for every inch on the map it relates to 10 miles in the real world.The scale is usually shown in the bottom right corner of the map.
Inches or centimeters. Wheel base, frame length, width, engine displacement, and just about every other measurable distance on cars is measured in inches or centimeters, depending on where it was manufactured. .
On a planimetric map, the scale tells you the number of inches on the map for every actual mile that the map represents. This scale can be expressed as a ratio, fraction, or graphic scale, allowing users to understand the relationship between the map's measurements and real-world distances. It is essential for accurately interpreting distances and navigating based on the map.
if it is running away from a predator...anywhere from 3 to 5 meters
scaleAPEX(: