87977 If \(\vec{a}=3 \hat{i}-5 \hat{j}\) and \(\vec{b}=6 \hat{i}+3 \hat{j}\) are two vectors and \(\overrightarrow{\mathbf{c}}\) is a vector such that \(\overrightarrow{\mathbf{c}}=\overrightarrow{\mathbf{a}} \times \overrightarrow{\mathbf{b}}\), then \(|\overrightarrow{\mathbf{a}}|:|\overrightarrow{\mathbf{b}}|:|\overrightarrow{\mathbf{c}}|=\)
87977 If \(\vec{a}=3 \hat{i}-5 \hat{j}\) and \(\vec{b}=6 \hat{i}+3 \hat{j}\) are two vectors and \(\overrightarrow{\mathbf{c}}\) is a vector such that \(\overrightarrow{\mathbf{c}}=\overrightarrow{\mathbf{a}} \times \overrightarrow{\mathbf{b}}\), then \(|\overrightarrow{\mathbf{a}}|:|\overrightarrow{\mathbf{b}}|:|\overrightarrow{\mathbf{c}}|=\)
87977 If \(\vec{a}=3 \hat{i}-5 \hat{j}\) and \(\vec{b}=6 \hat{i}+3 \hat{j}\) are two vectors and \(\overrightarrow{\mathbf{c}}\) is a vector such that \(\overrightarrow{\mathbf{c}}=\overrightarrow{\mathbf{a}} \times \overrightarrow{\mathbf{b}}\), then \(|\overrightarrow{\mathbf{a}}|:|\overrightarrow{\mathbf{b}}|:|\overrightarrow{\mathbf{c}}|=\)
87977 If \(\vec{a}=3 \hat{i}-5 \hat{j}\) and \(\vec{b}=6 \hat{i}+3 \hat{j}\) are two vectors and \(\overrightarrow{\mathbf{c}}\) is a vector such that \(\overrightarrow{\mathbf{c}}=\overrightarrow{\mathbf{a}} \times \overrightarrow{\mathbf{b}}\), then \(|\overrightarrow{\mathbf{a}}|:|\overrightarrow{\mathbf{b}}|:|\overrightarrow{\mathbf{c}}|=\)