In this paper, a new bio-nano-transport model is presented. The effects of first- and second-order velocity slips, thermal slip, mass slip, and gyro-tactic (torque-responsive) microorganism slip of bioconvective nanofluid flow from a moving plate under blowing phenomenon are numerically examined. The flow model is expressed by partial differential equations which are converted to a similar boundary value problem by similarity transformations. The boundary value problem is converted to a system of nonlinear equations which are then solved by a Matlab nonlinear equation solver fsolve integrated with a Matlab ODE solver ode15s. The effects of selected control parameters (first order slip, second order slip, thermal slip, microorganism slip, bl...
In recent years, significant progress has been made in modern micro- and nanotechnologies related to...
A mathematical model is presented for three-dimensional unsteady boundary layer slip flow of Newton...
In the present work, a mathematical model is developed and analyzed to study the influence of nanopa...
In this paper, a new bio-nano-transport model is presented. The effects of first and second order ve...
A mathematical model is developed to examine the effects of the Stefan blowing, second order velocit...
The effects of Stefan blowing and the velocity, thermal and solutal slips on bioconvection nanofluid...
A mathematical model is developed to examine the effects of the Stefan blowing, second order velocit...
A theoretical study is presented to examine free convective boundary layer flow of water-based bio-n...
Transport phenomena with fluid flow, heat, mass, nanoparticle species and microorganism transferexte...
The effects of anisotropic slip and thermal jump on the three dimensional stagnation point flow of ...
A mathematical model for two dimensional steady laminar natural convective anisotropic slip boundary...
A theoretical study is presented for three-dimensional flow of bioconvection nanofluids containing g...
A theoretical study is presented for three-dimensional flow of bioconvection nanofluids containing g...
A numerical investigation of unsteady stagnation point flow of bioconvective nanofluid due to an exp...
In recent years, significant progress has been made in modern micro- and nanotechnologies related to...
A mathematical model is presented for three-dimensional unsteady boundary layer slip flow of Newton...
In the present work, a mathematical model is developed and analyzed to study the influence of nanopa...
In this paper, a new bio-nano-transport model is presented. The effects of first and second order ve...
A mathematical model is developed to examine the effects of the Stefan blowing, second order velocit...
The effects of Stefan blowing and the velocity, thermal and solutal slips on bioconvection nanofluid...
A mathematical model is developed to examine the effects of the Stefan blowing, second order velocit...
A theoretical study is presented to examine free convective boundary layer flow of water-based bio-n...
Transport phenomena with fluid flow, heat, mass, nanoparticle species and microorganism transferexte...
The effects of anisotropic slip and thermal jump on the three dimensional stagnation point flow of ...
A mathematical model for two dimensional steady laminar natural convective anisotropic slip boundary...
A theoretical study is presented for three-dimensional flow of bioconvection nanofluids containing g...
A theoretical study is presented for three-dimensional flow of bioconvection nanofluids containing g...
A numerical investigation of unsteady stagnation point flow of bioconvective nanofluid due to an exp...
In recent years, significant progress has been made in modern micro- and nanotechnologies related to...
A mathematical model is presented for three-dimensional unsteady boundary layer slip flow of Newton...
In the present work, a mathematical model is developed and analyzed to study the influence of nanopa...