363146 Inside a horizontally moving box, an experiment finds that when an object is placed on a smooth horizontal table and is released, it moves with an acceleration of \(10\;m{\rm{/}}{s^2}\). In this box if \(1\;kg\) body is suspended with a light string, the tension in the string in equilibrium position (\(w.r.t.\) experimenter) will be (Take \(g = 10\;m{\rm{/}}{s^2}\))
363146 Inside a horizontally moving box, an experiment finds that when an object is placed on a smooth horizontal table and is released, it moves with an acceleration of \(10\;m{\rm{/}}{s^2}\). In this box if \(1\;kg\) body is suspended with a light string, the tension in the string in equilibrium position (\(w.r.t.\) experimenter) will be (Take \(g = 10\;m{\rm{/}}{s^2}\))
363146 Inside a horizontally moving box, an experiment finds that when an object is placed on a smooth horizontal table and is released, it moves with an acceleration of \(10\;m{\rm{/}}{s^2}\). In this box if \(1\;kg\) body is suspended with a light string, the tension in the string in equilibrium position (\(w.r.t.\) experimenter) will be (Take \(g = 10\;m{\rm{/}}{s^2}\))
363146 Inside a horizontally moving box, an experiment finds that when an object is placed on a smooth horizontal table and is released, it moves with an acceleration of \(10\;m{\rm{/}}{s^2}\). In this box if \(1\;kg\) body is suspended with a light string, the tension in the string in equilibrium position (\(w.r.t.\) experimenter) will be (Take \(g = 10\;m{\rm{/}}{s^2}\))