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\(\left(a^2+b^2\right)\ge2ab\)
\(\left(a^2+1\right)\ge2a\)
Do đó: \(\left(a^2+b^2\right)\left(a^2+1\right)\ge4a^2b\)
a) Đặt \(A=\dfrac{1}{2^2}+\dfrac{1}{4^2}+\dfrac{1}{6^2}+...+\dfrac{1}{\left(2n\right)^2}\)
\(A=\dfrac{1}{2^2}\left(1+\dfrac{1}{2^2}+\dfrac{1}{3^2}+...+\dfrac{1}{n^2}\right)\)
Ta có:
\(\dfrac{1}{2^2}+\dfrac{1}{3^2}+...+\dfrac{1}{n^2}< \dfrac{1}{1.2}+\dfrac{1}{2.3}+...+\dfrac{1}{\left(n-1\right)n}\)
\(\dfrac{1}{2^2}+\dfrac{1}{3^2}+...+\dfrac{1}{n^2}< 1-\dfrac{1}{2}+\dfrac{1}{2}-\dfrac{1}{3}+...+\dfrac{1}{n-1}-\dfrac{1}{n}\)
\(\dfrac{1}{2^2}+\dfrac{1}{3^2}+...+\dfrac{1}{n^2}< 1-\dfrac{1}{n}\)
\(\Rightarrow1+\dfrac{1}{2^2}+\dfrac{1}{3^2}+...+\dfrac{1}{n^2}< 1-\dfrac{1}{n}+1\)
\(\Rightarrow1+\dfrac{1}{2^2}+\dfrac{1}{3^2}+...+\dfrac{1}{n^2}< 2-\dfrac{1}{n}\)
\(\Rightarrow\dfrac{1}{2^2}\left(1+\dfrac{1}{2^2}+\dfrac{1}{3^2}+...+\dfrac{1}{n^2}\right)< \dfrac{1}{2^2}\left(2-\dfrac{1}{2}\right)\)
\(\Rightarrow A< \dfrac{1}{2^2}.2-\dfrac{1}{2^2}.\dfrac{1}{2}\)
\(\Rightarrow A< \dfrac{1}{2}-\dfrac{1}{2^3}< \dfrac{1}{2}\)
Vậy \(A< \dfrac{1}{2}\left(Đpcm\right)\)
b) Đặt \(B=\dfrac{1}{3^2}+\dfrac{1}{5^2}+\dfrac{1}{7^2}+...+\dfrac{1}{\left(2n+1\right)^2}\)
Ta có:
\(B< \dfrac{1}{1.3}+\dfrac{1}{3.5}+\dfrac{1}{5.7}+...+\dfrac{1}{\left(2n-1\right)\left(2n+1\right)}\)
\(B< \dfrac{1}{2}\left(\dfrac{2}{1.3}+\dfrac{2}{3.5}+\dfrac{2}{5.7}+...+\dfrac{2}{\left(2n-1\right)\left(2n+1\right)}\right)\)
\(B< \dfrac{1}{2}\left(1-\dfrac{1}{3}+\dfrac{1}{3}-\dfrac{1}{5}+\dfrac{1}{5}-\dfrac{1}{7}+...+\dfrac{1}{2n-1}-\dfrac{1}{2n+1}\right)\)
\(B< \dfrac{1}{2}\left(1-\dfrac{1}{2n+1}\right)\)
\(B< \dfrac{1}{2}\left(\dfrac{2n+1}{2n+1}-\dfrac{1}{2n+1}\right)\)
\(B< \dfrac{1}{2}.\dfrac{2n}{2n+1}\)
\(B< \dfrac{2n}{4n+2}\)
\(B< \dfrac{2n}{2\left(2n+1\right)}\)
\(B< \dfrac{n}{2n+1}\)
Ta co \(a^4+b^4+2\ge2a^2b^2+2\)\(=2\left(a^2b^2+1\right)\ge2\cdot2ab\)\(=4ab\)
Dau "=" xay ra khi va chi khi a=b
\(a^2+b^2+c^2+\frac{3}{4}\ge-a-b-c\)
\(\Leftrightarrow a^2+b^2+c^2+\frac{3}{4}+a+b+c\ge0\)
\(\Leftrightarrow\left(a^2+a+\frac{1}{4}\right)+\left(b^2+b+\frac{1}{4}\right)+\left(c^2+c+\frac{1}{4}\right)\ge0\)
\(\Leftrightarrow\left(a+\frac{1}{2}\right)^2+\left(b+\frac{1}{2}\right)^2+\left(c+\frac{1}{2}\right)^2\ge0\) (luôn đúng)
Vậy \(a^2+b^2+c^2+\frac{3}{4}\ge-a-b-c\)
b ) chuyển vế tương tự
a: \(a^3+b^3-a^2b-ab^2\)
\(=\left(a+b\right)\left(a^2-ab+b^2\right)-ab\left(a+b\right)\)
\(=\left(a+b\right)\left(a-b\right)^2>=0\)
=>\(a^3+b^3>=a^2b+ab^2\)
c: \(a^2+b^2=\left(a+b\right)^2-2ab=1-2ab>=\dfrac{1}{2}\)
Áp dụng liên tiếp BĐT \(\frac{\left(x+y\right)^2}{2}\le x^2+y^2\Leftrightarrow\left(x-y\right)^2\ge0\left(true\right)\)
\(\left(\frac{a+b}{2}\right)^4=\left(\frac{\frac{\left(a+b\right)^2}{2}}{2}\right)^2\le\left(\frac{a^2+b^2}{2}\right)^2=\left(\frac{\frac{\left(a^2+b^2\right)^2}{2}}{2}\right)\le\frac{a^4+b^4}{2}\)
Dấu "=" xảy ra tại a=b
Vậy..................