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Primarily denotes ten years, but occasionally refers to ten of something Duo: 2 In reference to people engaged in an endeavor together, as in musical performance (other words denote three or more people in the same context: trio, quartet, etc.) Grand: 1,000 Slang for a thousand of some unit of currency, such as dollars or pounds. Gross: 144 ...
Same size as AAA cell. 10850 [174] [175] 700-750 10 85 Not widely available, used in some pen flashlights to replace two AAA cells in series. 13400: 550 13: 40 Commonly used in disposable electronic cigarettes. 14250: Lithium ion 1 ⁄ 2 AA 300 14: 25 Same size as 1 ⁄ 2 AA cell. Used in the flashlight Lummi RAW. 14300: Lithium ion 3 ⁄ 5 AA ...
2. Denotes the range of values that a measured quantity may have; for example, 10 ± 2 denotes an unknown value that lies between 8 and 12. ∓ (minus-plus sign) Used paired with ±, denotes the opposite sign; that is, + if ± is –, and – if ± is +. ÷ (division sign)
Unit cell definition using parallelepiped with lengths a, b, c and angles between the sides given by α, β, γ [1]. A lattice constant or lattice parameter is one of the physical dimensions and angles that determine the geometry of the unit cells in a crystal lattice, and is proportional to the distance between atoms in the crystal.
Random variables are usually written in upper case Roman letters, such as or and so on. Random variables, in this context, usually refer to something in words, such as "the height of a subject" for a continuous variable, or "the number of cars in the school car park" for a discrete variable, or "the colour of the next bicycle" for a categorical variable.
For every combinatorial cell complex, one defines the Euler characteristic as the number of 0-cells, minus the number of 1-cells, plus the number of 2-cells, etc., if this alternating sum is finite. In particular, the Euler characteristic of a finite set is simply its cardinality, and the Euler characteristic of a graph is the number of ...
In other words, an area of 1 000 000 square metres and not 1000 square metres. 2 Mm 3 means two cubic megametres , or the volume of two cubes of 1 000 000 m by 1 000 000 m by 1 000 000 m , i.e. 2 × 10 18 m 3 , and not 2 000 000 cubic metres ( 2 × 10 6 m 3 ).
The statement " is non-negative for arbitrarily large ." is a shorthand for: "For every real number , () is non-negative for some value of greater than .". In the common parlance, the term "arbitrarily long" is often used in the context of sequence of numbers.