270598 Three identical particles each of mass " \(m\) " are arranged at the corners of an equilateral triangle of side " \(L\) ". If they are to be in equilibrium, the speed with which they must revolve under the influence of one another's gravity in a circular orbit circumscribing the triangle is
270598 Three identical particles each of mass " \(m\) " are arranged at the corners of an equilateral triangle of side " \(L\) ". If they are to be in equilibrium, the speed with which they must revolve under the influence of one another's gravity in a circular orbit circumscribing the triangle is
270598 Three identical particles each of mass " \(m\) " are arranged at the corners of an equilateral triangle of side " \(L\) ". If they are to be in equilibrium, the speed with which they must revolve under the influence of one another's gravity in a circular orbit circumscribing the triangle is
270598 Three identical particles each of mass " \(m\) " are arranged at the corners of an equilateral triangle of side " \(L\) ". If they are to be in equilibrium, the speed with which they must revolve under the influence of one another's gravity in a circular orbit circumscribing the triangle is