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\left(x^{3}\right)^{2}+8x^{3}x^{5}+16\left(x^{5}\right)^{2}
Use binomial theorem \left(a+b\right)^{2}=a^{2}+2ab+b^{2} to expand \left(x^{3}+4x^{5}\right)^{2}.
x^{6}+8x^{3}x^{5}+16\left(x^{5}\right)^{2}
To raise a power to another power, multiply the exponents. Multiply 3 and 2 to get 6.
x^{6}+8x^{8}+16\left(x^{5}\right)^{2}
To multiply powers of the same base, add their exponents. Add 3 and 5 to get 8.
x^{6}+8x^{8}+16x^{10}
To raise a power to another power, multiply the exponents. Multiply 5 and 2 to get 10.
\left(x^{3}\right)^{2}+8x^{3}x^{5}+16\left(x^{5}\right)^{2}
Use binomial theorem \left(a+b\right)^{2}=a^{2}+2ab+b^{2} to expand \left(x^{3}+4x^{5}\right)^{2}.
x^{6}+8x^{3}x^{5}+16\left(x^{5}\right)^{2}
To raise a power to another power, multiply the exponents. Multiply 3 and 2 to get 6.
x^{6}+8x^{8}+16\left(x^{5}\right)^{2}
To multiply powers of the same base, add their exponents. Add 3 and 5 to get 8.
x^{6}+8x^{8}+16x^{10}
To raise a power to another power, multiply the exponents. Multiply 5 and 2 to get 10.