When doing your calculations, you should keep the values to as many digits as are available, then when you get to the final answer, look at the third decimal place (the thousandths place), and based on if it is 0-4 then you just truncate at the second decimal place, or if the thousandths place is 5-9 then add 0.01 to the number and then truncate at 2 decimal places.
To achieve the answer to what the decimal equivalent of the largest binary number with five places (or bits) is, work this equation: The formula is 2_ -1 where n is the number of bits. That will get you where you need to be.
(Pi) has an infinite number of decimal places, and never ends. So if you use 'pi' to get the answer to a problem, then the answer must always be approximate; it can never be exactly true. The more decimal places of 'pi' you use when you work the problem, the more accurate your answer will be. Here's a tiny portion of the beginning of 'pi'. Use as many or as few decimal places as you want. 3.14159 26535 89793 23846 26433 83279 50288 . . . . . However many decimal places you use will be the same as the number of digits in your answer that are correct. After those, none of the rest mean anything, and you should get rid of them by rounding the answer.
2 Cent The way it works is you go to the last number on the right and work back with the rule: If it's (1,2,3,4) then the next number on the left stays the same and if it's (5,6,7,8,9) then the next number on the left increases by one So in this case Number is 1.82566 Rounded to 4 Decimal Places 1.8257 Rounded to 3 Decimal Places 1.826 Rounded to 2 Decimal Places 1.83 Rounded to 1 Decimal Places 1.8 Nearest Cent 2
Well, "62428" is five decimal places, so it looks like your work is done.
The concept of surds, is that if a number isn't divisible, and has too many decimal places, it can be left as a surd, to make it less complicated to work out
Well, darling, the number 36.4375 has four decimal places. It's not rocket science, honey, just count those digits after the decimal point. So, in this case, you've got 4 decimal places to work with. Hope that clears things up for you!
The best is a decimal tab if there are decimal places, but the right tab will work for whole numbers.The best is a decimal tab if there are decimal places, but the right tab will work for whole numbers.The best is a decimal tab if there are decimal places, but the right tab will work for whole numbers.The best is a decimal tab if there are decimal places, but the right tab will work for whole numbers.The best is a decimal tab if there are decimal places, but the right tab will work for whole numbers.The best is a decimal tab if there are decimal places, but the right tab will work for whole numbers.The best is a decimal tab if there are decimal places, but the right tab will work for whole numbers.The best is a decimal tab if there are decimal places, but the right tab will work for whole numbers.The best is a decimal tab if there are decimal places, but the right tab will work for whole numbers.The best is a decimal tab if there are decimal places, but the right tab will work for whole numbers.The best is a decimal tab if there are decimal places, but the right tab will work for whole numbers.
To achieve the answer to what the decimal equivalent of the largest binary number with five places (or bits) is, work this equation: The formula is 2_ -1 where n is the number of bits. That will get you where you need to be.
When adding numbers, the result should be rounded to the same number of decimal places as the number with the fewest decimal places. This ensures that the final answer is accurate and reflects the precision of the original numbers.
(Pi) has an infinite number of decimal places, and never ends. So if you use 'pi' to get the answer to a problem, then the answer must always be approximate; it can never be exactly true. The more decimal places of 'pi' you use when you work the problem, the more accurate your answer will be. Here's a tiny portion of the beginning of 'pi'. Use as many or as few decimal places as you want. 3.14159 26535 89793 23846 26433 83279 50288 . . . . . However many decimal places you use will be the same as the number of digits in your answer that are correct. After those, none of the rest mean anything, and you should get rid of them by rounding the answer.
2 Cent The way it works is you go to the last number on the right and work back with the rule: If it's (1,2,3,4) then the next number on the left stays the same and if it's (5,6,7,8,9) then the next number on the left increases by one So in this case Number is 1.82566 Rounded to 4 Decimal Places 1.8257 Rounded to 3 Decimal Places 1.826 Rounded to 2 Decimal Places 1.83 Rounded to 1 Decimal Places 1.8 Nearest Cent 2
Well, "62428" is five decimal places, so it looks like your work is done.
The answer is 34! U do it by cross multiplying her is the work! _17___ = ___X___ 100 200
The concept of surds, is that if a number isn't divisible, and has too many decimal places, it can be left as a surd, to make it less complicated to work out
71.5 / 90 = 0.7944 (rounded 4 decimal places) Multiply by 100 to convert to percentage =79.44 % (to 2 decimal places)
1 Height of cylinder: 346/pi*3.62 = 8.498088011 cm 2 Total surface area: (2*pi*3.62)+(7.2*pi*8.498088011) = 273.65230311 3 Correct to 3 decimal places: 273.652 square cm
If you are trying to work out the decimal form of a fraction, such as 4/5, divide the numerator (top number) by the denominator (bottom number). 4/5 = 0.8