141904 A stone is dropped from a balloon going up with uniform velocity of \(5.0 \mathrm{~m} / \mathrm{s}\). If the balloon was \(50 \mathrm{~m}\) high when the stone was dropped, then its height when the stone hits the ground is \(\left(g=10 \mathrm{~m} / \mathrm{s}^{2}\right)\)
141906 \(\mathrm{A}, \mathrm{B}, \mathrm{C}\) are points in a vertical line that \(\mathrm{AB}=\) \(B C\) If a body falls freely from rest at \(A\), And \(t_{1}\) and \(\mathbf{t}_{\mathbf{2}}\) are times taken to travel distances \(A B\) and \(B C\), then ratio \(\left(t_{2} / t_{1}\right)\) is
141904 A stone is dropped from a balloon going up with uniform velocity of \(5.0 \mathrm{~m} / \mathrm{s}\). If the balloon was \(50 \mathrm{~m}\) high when the stone was dropped, then its height when the stone hits the ground is \(\left(g=10 \mathrm{~m} / \mathrm{s}^{2}\right)\)
141906 \(\mathrm{A}, \mathrm{B}, \mathrm{C}\) are points in a vertical line that \(\mathrm{AB}=\) \(B C\) If a body falls freely from rest at \(A\), And \(t_{1}\) and \(\mathbf{t}_{\mathbf{2}}\) are times taken to travel distances \(A B\) and \(B C\), then ratio \(\left(t_{2} / t_{1}\right)\) is
141904 A stone is dropped from a balloon going up with uniform velocity of \(5.0 \mathrm{~m} / \mathrm{s}\). If the balloon was \(50 \mathrm{~m}\) high when the stone was dropped, then its height when the stone hits the ground is \(\left(g=10 \mathrm{~m} / \mathrm{s}^{2}\right)\)
141906 \(\mathrm{A}, \mathrm{B}, \mathrm{C}\) are points in a vertical line that \(\mathrm{AB}=\) \(B C\) If a body falls freely from rest at \(A\), And \(t_{1}\) and \(\mathbf{t}_{\mathbf{2}}\) are times taken to travel distances \(A B\) and \(B C\), then ratio \(\left(t_{2} / t_{1}\right)\) is
141904 A stone is dropped from a balloon going up with uniform velocity of \(5.0 \mathrm{~m} / \mathrm{s}\). If the balloon was \(50 \mathrm{~m}\) high when the stone was dropped, then its height when the stone hits the ground is \(\left(g=10 \mathrm{~m} / \mathrm{s}^{2}\right)\)
141906 \(\mathrm{A}, \mathrm{B}, \mathrm{C}\) are points in a vertical line that \(\mathrm{AB}=\) \(B C\) If a body falls freely from rest at \(A\), And \(t_{1}\) and \(\mathbf{t}_{\mathbf{2}}\) are times taken to travel distances \(A B\) and \(B C\), then ratio \(\left(t_{2} / t_{1}\right)\) is
141904 A stone is dropped from a balloon going up with uniform velocity of \(5.0 \mathrm{~m} / \mathrm{s}\). If the balloon was \(50 \mathrm{~m}\) high when the stone was dropped, then its height when the stone hits the ground is \(\left(g=10 \mathrm{~m} / \mathrm{s}^{2}\right)\)
141906 \(\mathrm{A}, \mathrm{B}, \mathrm{C}\) are points in a vertical line that \(\mathrm{AB}=\) \(B C\) If a body falls freely from rest at \(A\), And \(t_{1}\) and \(\mathbf{t}_{\mathbf{2}}\) are times taken to travel distances \(A B\) and \(B C\), then ratio \(\left(t_{2} / t_{1}\right)\) is