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\left(\sqrt{11}\right)^{2}+2\sqrt{11}\sqrt{5}+\left(\sqrt{5}\right)^{2}
Use binomial theorem \left(a+b\right)^{2}=a^{2}+2ab+b^{2} to expand \left(\sqrt{11}+\sqrt{5}\right)^{2}.
11+2\sqrt{11}\sqrt{5}+\left(\sqrt{5}\right)^{2}
The square of \sqrt{11} is 11.
11+2\sqrt{55}+\left(\sqrt{5}\right)^{2}
To multiply \sqrt{11} and \sqrt{5}, multiply the numbers under the square root.
11+2\sqrt{55}+5
The square of \sqrt{5} is 5.
16+2\sqrt{55}
Add 11 and 5 to get 16.
\left(\sqrt{11}\right)^{2}+2\sqrt{11}\sqrt{5}+\left(\sqrt{5}\right)^{2}
Use binomial theorem \left(a+b\right)^{2}=a^{2}+2ab+b^{2} to expand \left(\sqrt{11}+\sqrt{5}\right)^{2}.
11+2\sqrt{11}\sqrt{5}+\left(\sqrt{5}\right)^{2}
The square of \sqrt{11} is 11.
11+2\sqrt{55}+\left(\sqrt{5}\right)^{2}
To multiply \sqrt{11} and \sqrt{5}, multiply the numbers under the square root.
11+2\sqrt{55}+5
The square of \sqrt{5} is 5.
16+2\sqrt{55}
Add 11 and 5 to get 16.