(0.01 + 0.02) / 2 = 0.015
No, but it can be multiplied: The new matrix is 3x3. EG: 100100 100 200 010010 x 010 = 020 001001 001 002 100 010 001
001, 002, 003, 004, 005, 010, 011, 012, 013, 014, 015, 020, 021, 022 and 023.
.009 is greater than .002
002 is 2 and 020 is 20, so 020 is greater.
The smaller the value the closer it is to zero..003 < .01, therefore .003 is closer to zero.On a number line (not to scale):---(0)--(.001)-(.002)-(.003)-(.004)-(.005)-(.006)-(.007)-(.008)-(.009)-(.010)-(.011)Notice how .003 is closer to 0 than .010
No
Zero is 002. Well the numbers repersent wat examination number they are meaning wat examiny they are, so the numbers are given to each pair Ichi 001 Zero 002 , San 003 forta 004, Goe 005 Rokka 006,ect. so its like a ID number
002+002+001=005
001 for cheat ... 5.5 or 002 for cheat... 5.4
On the main bearings, you should fall between .001, and .003. If it is high performance, and you are going to rev it, go .002. Looser will rev.
4, 002, 009, 001
There are an infinite number of possibilities: 396-0, 397-1, 398-2, etc 396.1-.1, 396.2-.2, etc 396.001-.001, 396.002-.002, etc and so on.
49 zeros [leading zeros are not used like 001, 002, etc.] This does not include the two zeros in 300 (since the question stated between). So if 300 is included, then 51 zero digits.
.002
002 Chop Chop the Cheeky Chimp [Ninja] Any three Dragon Fruits
Answer measuring tolerance.it is a limit above and or below a specific size. eg.2.000" +.001" -.001" so your total tolerance is .002".so you are allowed to go one thousandth of an inch above 2.000" and one thousandth of an inch below2.000".
No, but it can be multiplied: The new matrix is 3x3. EG: 100100 100 200 010010 x 010 = 020 001001 001 002 100 010 001