359772 Two satellites \(A\) and \(B\) revolve round the same planet in coplanar circular orbits lying in the same plane. Their periods of revolutions are \(1\;h\) and \(8\;h\), respectively. The radius of the orbit of \(A\) is \({10^4}\;km\). The speed of \(B\) is relative to \(A\), when they are closed in \(km{\rm{/}}h\) is
359773 A satellite is revolving in a circular orbit at a height ' \(h\) ' from the earth's surface (radius of earth \(R;h < < R\) ). The minimum increase in its orbital velocity required, so that the satellite could escape from the earth's gravitational field, is close to : (Neglect the effect of atmosphere.)
359772 Two satellites \(A\) and \(B\) revolve round the same planet in coplanar circular orbits lying in the same plane. Their periods of revolutions are \(1\;h\) and \(8\;h\), respectively. The radius of the orbit of \(A\) is \({10^4}\;km\). The speed of \(B\) is relative to \(A\), when they are closed in \(km{\rm{/}}h\) is
359773 A satellite is revolving in a circular orbit at a height ' \(h\) ' from the earth's surface (radius of earth \(R;h < < R\) ). The minimum increase in its orbital velocity required, so that the satellite could escape from the earth's gravitational field, is close to : (Neglect the effect of atmosphere.)
359772 Two satellites \(A\) and \(B\) revolve round the same planet in coplanar circular orbits lying in the same plane. Their periods of revolutions are \(1\;h\) and \(8\;h\), respectively. The radius of the orbit of \(A\) is \({10^4}\;km\). The speed of \(B\) is relative to \(A\), when they are closed in \(km{\rm{/}}h\) is
359773 A satellite is revolving in a circular orbit at a height ' \(h\) ' from the earth's surface (radius of earth \(R;h < < R\) ). The minimum increase in its orbital velocity required, so that the satellite could escape from the earth's gravitational field, is close to : (Neglect the effect of atmosphere.)
359772 Two satellites \(A\) and \(B\) revolve round the same planet in coplanar circular orbits lying in the same plane. Their periods of revolutions are \(1\;h\) and \(8\;h\), respectively. The radius of the orbit of \(A\) is \({10^4}\;km\). The speed of \(B\) is relative to \(A\), when they are closed in \(km{\rm{/}}h\) is
359773 A satellite is revolving in a circular orbit at a height ' \(h\) ' from the earth's surface (radius of earth \(R;h < < R\) ). The minimum increase in its orbital velocity required, so that the satellite could escape from the earth's gravitational field, is close to : (Neglect the effect of atmosphere.)
359772 Two satellites \(A\) and \(B\) revolve round the same planet in coplanar circular orbits lying in the same plane. Their periods of revolutions are \(1\;h\) and \(8\;h\), respectively. The radius of the orbit of \(A\) is \({10^4}\;km\). The speed of \(B\) is relative to \(A\), when they are closed in \(km{\rm{/}}h\) is
359773 A satellite is revolving in a circular orbit at a height ' \(h\) ' from the earth's surface (radius of earth \(R;h < < R\) ). The minimum increase in its orbital velocity required, so that the satellite could escape from the earth's gravitational field, is close to : (Neglect the effect of atmosphere.)