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# is the ratio of the demensions in the drawing to the corresponding actual dimensions. The scale factor for a scale drawing is the ratio of the dimensions in the drawing to the corresponding acual bimensions.
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28 ft. by 36 ft. Assuming the scale is 12 inches (drawing) = 2 ft (room). For every one foot in the drawing, you get two feet of room. Room then is 28 ft. by 36 ft. in a 14 X 18 drawing.
62.5
well.... first off you have to find the scale factor...
# is the ratio of the demensions in the drawing to the corresponding actual dimensions. The scale factor for a scale drawing is the ratio of the dimensions in the drawing to the corresponding acual bimensions.
measure something in the drawing/model and measure a similar thing in real life. now divide the smaller measurement into the bigger measurement, that's the scale. So if in a model a person on street is 2cm then in real life a person is about 2 meters or 200cm so the scale is 1:100.
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You first measure the distance between the points as shown on the map, then you compare that measurement with the map scale.
Ok sooo you first put the scale number over the actual number then u ( if needed) covert to the same kind of measurement thennn you put the outcome over the scale again and you simplify........
on the bill of materials
1:786
You would need to use a Triple Beam Balance, or you could put it on a scale, and then convert the scale's measurement to grams, which is the measurement of mass.
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28 ft. by 36 ft. Assuming the scale is 12 inches (drawing) = 2 ft (room). For every one foot in the drawing, you get two feet of room. Room then is 28 ft. by 36 ft. in a 14 X 18 drawing.
subtract the weight that the scale reads by 10
5 cm. But you will not find planets of that size anywhere!