This paper describes how an investigation on unsteady Magnetohydrodynamic (MHD) free convective flow of a viscous incompressible electrically conducting fluid past an exponentially accelerated vertical ramped temperature plate in porous medium with radiation absorption effects is carried out. In addition, the first order chemical reaction is assumed in the flow. Under Boussinesq approximation, the exact solutions for momentum, energy and concentration equations are made in closed form using the Laplace transform technique. The solutions for isothermal plate were also obtained to compare it with that of ramped temperature plate. The expressions derived for skin friction, Nusselt number and Sherwood number are evaluated numerically and their analysis with different flow parameters is evaluated and concluded through tables. This study presents that the profiles of fluid velocity and fluid temperature are higher in case of isothermal plate in comparison to ramped temperature plate. Also fluid velocity and fluid temperature increases under radiation absorption effects but shows decreasing patterns under chemical reaction. Further the drag at the plates is found to be increased with radiationabsorption whereasthepresenceofchemicalreaction reducesthedrag. But therate of heat transfer phenomenon at the plates has adverse effects as that of drag in the presence of radiation absorption and chemicalreaction. Also the chemical reaction in the flow has enhanced the rate of mass transfer at the plates.