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anonymous

  • one year ago

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  1. anonymous
    • one year ago
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    What is \[2\frac{ 4 }{ 3 }\] equal; to

  2. Mehek14
    • one year ago
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    options?

  3. anonymous
    • one year ago
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    \[3\sqrt{8} \] \[\sqrt{16}\]

  4. anonymous
    • one year ago
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    3 to 8 2 to 8 3 to 16 2 to 16

  5. anonymous
    • one year ago
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    in square root formation

  6. Mehek14
    • one year ago
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    \[x^{\dfrac{a}{b}}=\sqrt[b]{x^a}\]

  7. anonymous
    • one year ago
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    okay so i solve using that

  8. Mehek14
    • one year ago
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    yea

  9. anonymous
    • one year ago
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    okay 3 to 16 thanks!

  10. Mehek14
    • one year ago
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    yes you are correct ^_^

  11. anonymous
    • one year ago
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    can you check mine on one more

  12. Mehek14
    • one year ago
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    yea sure

  13. anonymous
    • one year ago
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    \[\frac{ \sqrt{2} }{ \sqrt[3]{2} }\]

  14. anonymous
    • one year ago
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    would it be

  15. anonymous
    • one year ago
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    \[2\frac{ 3 }{ 2 }\]

  16. Mehek14
    • one year ago
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    what options do you have

  17. anonymous
    • one year ago
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    \[2\frac{ 1 }{ }\]

  18. anonymous
    • one year ago
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    with a 6 in the bottom

  19. anonymous
    • one year ago
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    \[2\frac{ 1 }{ 3 }\]

  20. Mehek14
    • one year ago
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    \(2^{\dfrac{1}{6}}\)?

  21. anonymous
    • one year ago
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    \[2\frac{ 5 }{ 6 }\]

  22. anonymous
    • one year ago
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    yeah

  23. anonymous
    • one year ago
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    and the one that i think it is is the last option

  24. Mehek14
    • one year ago
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    hm not sure...

  25. Mehek14
    • one year ago
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    i tried this on a calculator online and this is what I got https://www.symbolab.com/solver/radical-equation-calculator/%5Cfrac%7B%5Csqrt%7B2%7D%7D%7B%5Csqrt%5B3%5D%7B2%7D%7D/?origin=button

  26. anonymous
    • one year ago
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    yeah that was one of the options. il trust you on it! thank you again.

  27. Mehek14
    • one year ago
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    np

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