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Home » Solution: For vectors to be orthogonal, their dot product must be zero: $\mathbfm \cdot \mathbfn = x(1) + 2(-1) = x - 2 = 0$. Solving gives $x = 2$. The final answer is $\boxed2$. - AMAZONAWS

Solution: For vectors to be orthogonal, their dot product must be zero: $\mathbfm \cdot \mathbfn = x(1) + 2(-1) = x - 2 = 0$. Solving gives $x = 2$. The final answer is $\boxed2$. - AMAZONAWS

📅 March 11, 2026 👤 scraface
Mar 11, 2026
Solution: For vectors to be orthogonal, their dot product must be zero: $\mathbf{m} \cdot \mathbf{n} = x(1) + 2(-1) = x - 2 = 0$. Solving gives $x = 2$. The final answer is $\boxed{2}$.

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