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Thermal radiative boundary layer flow of particulate suspension due to an exponential stretching sheet in presence of electrification of particles and internal heat source/sink is considered in this study. Similarity transformation followed by shooting technique using Runge-Kutta 4th order method is adopted for analyzing this problem. Particle electrification and the effect of a heat source/sink are included in the set of influencing parameters to understand the flow characteristics. From this investigation it is observed that the higher electrification parameter is to reduce the normalized fluid temperature and to enhance the normalized particle temperature in the presence of heat source, whereas the trend is reversed in the presence of heat sink.
Particulate suspension, Electrification of SPM, Thermal Radiation, Heat source & sink, Particulate suspension, Electrification of SPM, Thermal Radiation, Heat source & sink
Particulate suspension, Electrification of SPM, Thermal Radiation, Heat source & sink, Particulate suspension, Electrification of SPM, Thermal Radiation, Heat source & sink
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