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Question Detail
Evaluate \begin{aligned}
\sqrt{1471369}
\end{aligned}
- 1213
- 1223
- 1233
- 1243
Answer: Option A
1. \begin{aligned}
(\frac{\sqrt{625}}{11} \times \frac{14}{\sqrt{25}} \times \frac{11}{\sqrt{196}})
\end{aligned}
- 15
- 7
- 5
- 9
Answer: Option C
Explanation:
\begin{aligned}
= (\frac{25}{11} \times \frac{14}{5} \times \frac{11}{14})
\end{aligned}
\begin{aligned}
= 5
\end{aligned}
2. Evaluate
\begin{aligned}
\sqrt{0.00059049}
\end{aligned}
- 0.00243
- 0.0243
- 0.243
- 2.43
Answer: Option B
Explanation:
Very obvious tip here is, after squre root the terms after decimal will be half (that is just a trick), works awesome at many questions like this.
3. The least perfect square, which is divisible by each of 21, 36 and 66 is
- 213414
- 213424
- 213434
- 213444
Answer: Option D
Explanation:
L.C.M. of 21, 36, 66 = 2772
Now, 2772 = 2 x 2 x 3 x 3 x 7 x 11
To make it a perfect square, it must be multiplied by 7 x 11.
So, required number = 2 x 2 x 3 x 3 x 7 x 7 x 11 x 11 = 213444
4. What is the square root of 0.16
- 0.4
- 0.04
- 0.004
- 4
Answer: Option A
Explanation:
as .4 * .4 = 0.16
5. Evaluate \begin{aligned} \sqrt[3]{\sqrt{.000064}} \end{aligned}
- 0.0002
- 0.002
- 0.02
- 0.2
Answer: Option D
Explanation:
\begin{aligned} = \sqrt{.000064} \end{aligned}
\begin{aligned} = \sqrt{\frac{64}{10^6}} \end{aligned}
\begin{aligned} = \frac{8}{10^3} = .008 \end{aligned}
\begin{aligned} = \sqrt[3]{.008} \end{aligned}
\begin{aligned} = \sqrt[3]{\frac{8}{1000}} \end{aligned}
\begin{aligned} = \frac{2}{10} = 0.2 \end{aligned}
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