There is no simple answer to this question because eggs are not spherical but ellipsoids (3 dimensional ellipses). There is, therefore, no direct link between the diameter and length.
If it were spherical, the length would have been 1.2*10^2 mm.
A standard CD:- 15mm Internal diameter, 120mm external diameter, 1.1 mm thick A mini CD:- 15mm Internal diameter, 80mm external diameter, 1.1 mm thick
120mm = 0.00012km
A cubic centimetre is a unit of volume. A millimetre is a unit of length. The two units are therefore incompatible.
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120 mm is equivalent to 12 centimeters or approximately 4.72 inches in circumference. To visualize it, think of it as roughly the diameter of a standard soda can, which typically measures around 6.5 cm (or about 2.6 inches) in diameter. Thus, 120 mm represents a larger circular measurement.
A rectangle does not have a diameter but it has diagonals. So using Pythagoras' theorem each diagonal is about 351.141mm in length rounded to 3 decimal places.
Tall? My CD's are round with a diameter of 120mm and 1mm thick.
A standard CD:- 15mm Internal diameter, 120mm external diameter, 1.1 mm thick A mini CD:- 15mm Internal diameter, 80mm external diameter, 1.1 mm thick
a CD is 120mm (4.7 inches) in diameter and 60mm radius, the hole is 15mm diamter (0.6 inches).
120mm = 0.00012km
a CD is 120mm (4.7 inches) in diameter and 60mm radius, the hole is 15mm diamter (0.6 inches).
The circumfrence of a compact disk is 37.6991118 cm or 37.70cm rounded or nearly 15 inches.
The size of a can of soup can vary, but a standard can of soup is typically around 75-120mm in diameter and 85-130mm in height.
A cubic centimetre is a unit of volume. A millimetre is a unit of length. The two units are therefore incompatible.
A magnification of 40 times is needed to achieve a 120mm image of a 3mm object. This is calculated by dividing the desired image size (120mm) by the original object size (3mm). So, a magnification factor of 40x would enlarge the 3mm object to 120mm.
80mm x 120mm equates to 3.15 inches x 4.72 inches.
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