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Move 10 decimal places to the right to get:

5.8 x 10-10

To understand why the exponent is negative, know the basics of multiplying the value by 10's. If we have only decimal values, such as 0.0008, then the exponent must turn out to be negative. That is because the value 8.0 is divided by 104 or 10000. This means that you move 4 decimal places from the starting point.

8/10000 = 0.0008

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Q: What are the quantities in scientific notation of 00.00000000058?
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What are the mathematical concepts involved in solving scientific notation?

Scientific notation is used when vast quantities of numbers are used such as the distances of faraway planets or in biology when the tiniest of decimals are used.


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Representation of very large or very small numbers or quantities in a straightforward way.


Why scientific notation useful to scientists?

Scientific notation produces convenient numbers when working with very small or very large quantities.


How do you solve scientific notation in algebra?

Scientific notation is not a puzzle or equation that needs to be "solved". You do not "solve" rational fractions - they are just a way of representing numbers. In the same way, scientific notation is simply one way of representing numbers. It is usually used for very large or very small quantities.


In scientific notation is a scalar called a vector?

Not at all. Scalar are numerical quantities without direction (for example time) where as vectors are numerical quantities with direction (for example gravitational force downward)


Why is the use of scientific notation important to chemistry?

Scientific notation is useful because it helps to read values' significant figures (sigfigs). For example, the number: 6.02^(-10) is much easier to read than .000000000602. When dealing with especially large or small quantities, scientific notation makes it easier to understand how big or small the quantity is.