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We aren't going to be able to answer this accurately if you don't tell us what the numbers are.

Q: Which number in the following group of numbers represents the smallest amount?

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The amount she earns in a year is the number of weeks in a year (52) times the amount she makes in 1 week: 52x

its 3x

The factors of 2 are 1 and 2. The factors of 3 are 1 and 3. The only common factor is 1. Therefore, the least (smallest) common factor is 1. If you mean LCM then it would be 6

It can get confusing if you have a bunch of numbers and decimals lined up like that, so when you get a problem like this, line them up vertically. It really does help.Like so:0.0130.10230.01030.021You're trying to go from least to greatest (smallest to largest), so look for the smallest numbers. Line all the ones starting with 0.0. Look at the bold numbers.0.0130.01030.021What of the bold numbers is the largest? You might be thinking - 103 would be the biggest of the three! But remember - there is always an infinite amount of understood zeros behind that they give to you. With that knowledge, what is bigger - 103, 210, or 130? Now you can line these in increasing order.0.0103, 0.012, 0.021, ?Now just add the other number, which the biggest.0.0103, 0.012, 0.021, 0.1023PS: Always check, when you're finished, what they were asking. It's so frustrating to get a question wrong because you listed them from greatest to smallest instead of smallest to greatest!

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0.831

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2

Out of that list of numbers, 1 is the smallest.

Those are not sets of numbers. They're just numbers. And they're equal.

59

0.09 All these numbers can be categorised in wholes, tenths and hundredths. Therefore 3.26 is 3 wholes, 2 tenths and 6 hundredths; 0.54 is 0 wholes, 5 tenths and 4 hundredths; 89.00 is 89 wholes, 0 tenths and 0 hundredths; 0.09 is 0 wholes, 0 tenths and 9 hundredths. Hence 0.09 is the smallest of the numbers.

The compound with the smallest whole-number mole ratio of elements can be determined from its empirical formula, which represents the simplest whole-number ratio of atoms in the compound. To find this, divide each element's molar amount by the smallest molar amount present in the compound.

No. You an get an infinite amount of minus numbers, and any of those which are positive when they are even will be positive when they are negative.