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प्रश्न
Find the value and express as a rational number in standard form:
\[\frac{- 40}{99} \div ( - 20)\]
बेरीज
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उत्तर
\[ \frac{- 40}{99} \div ( - 20) = \frac{- 40}{99} \times \frac{1}{- 20} = \frac{2}{99}\]
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या प्रश्नात किंवा उत्तरात काही त्रुटी आहे का?
संबंधित प्रश्न
Subtract the first rational number from the second in each of the following:
\[\frac{- 8}{33}, \frac{- 7}{22}\]
Express each of the following as a rational number of the form \[\frac{p}{q}:\]
\[\frac{- 7}{4} + 0 + \frac{- 9}{5} + \frac{19}{10} + \frac{11}{14}\]
Simplify:
\[\frac{5}{4} - \frac{7}{6} - \frac{- 2}{3}\]
Multiply:
\[\frac{- 8}{25} \text{by} \frac{- 5}{16}\]
Simplify:
\[\left( \frac{- 4}{3} \times \frac{12}{- 5} \right) + \left( \frac{3}{7} \times \frac{21}{15} \right)\]
Fill in the blanks:
The product of two negative rational numbers is always .....
Fill in the blanks:
\[\frac{1}{2} \times \left( \frac{3}{4} + \frac{- 5}{12} \right) = \frac{1}{2} \times . . . . . . + . . . . . . \times \frac{- 5}{12}\]
Write the following rational number in `bb(p/q)` form.
`2.bar514`
Insert three rational numbers between:
0 and 1
Which arrow best shows the position of `11/3` on the number line?

