A force \( \overrightarrow{\mathrm{F}}=(\hat{\mathrm{i}}+2 \hat{\mathrm{j}}+3 \hat{\mathrm{k}}) ...
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A force \( \overrightarrow{\mathrm{F}}=(\hat{\mathrm{i}}+2 \hat{\mathrm{j}}+3 \hat{\mathrm{k}}) \mathrm{N} \) acts at a point \( (4 \hat{\mathrm{i}}+3 \hat{\mathrm{j}}-\hat{\mathrm{k}}) \mathrm{m} \). Then the magnitude of torque about the point \( (\hat{\mathrm{i}}+2 \hat{\mathrm{j}}+\hat{\mathrm{k}}) \mathrm{m} \) will be \( \sqrt{\mathrm{x}} \mathrm{N}-\mathrm{m} \). The value of \( x \) is
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