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\left(m+4\right)^{2}\left(m+4\right)
Multiply m+4 and m+4 to get \left(m+4\right)^{2}.
\left(m+4\right)^{3}
To multiply powers of the same base, add their exponents. Add 2 and 1 to get 3.
m^{3}+12m^{2}+48m+64
Use binomial theorem \left(a+b\right)^{3}=a^{3}+3a^{2}b+3ab^{2}+b^{3} to expand \left(m+4\right)^{3}.
\left(m+4\right)^{2}\left(m+4\right)
Multiply m+4 and m+4 to get \left(m+4\right)^{2}.
\left(m+4\right)^{3}
To multiply powers of the same base, add their exponents. Add 2 and 1 to get 3.
m^{3}+12m^{2}+48m+64
Use binomial theorem \left(a+b\right)^{3}=a^{3}+3a^{2}b+3ab^{2}+b^{3} to expand \left(m+4\right)^{3}.