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Values of local Nusselt number and local Sherwood outlet syndrome thoracic for different values of and when and ConclusionsWe examined the effects of thermal and concentration stratifications in mixed convective radiative flow of Jeffrey fluid in this attempt. The main observations that we found in this investigation are as follows: We have to compute 28th-order of HAM deformations for the convergent solutions.

Deborah number and ratio of relaxation to retardation times have reverse effects on the velocity profile The effects of thermal buoyancy parameters on the velocity field are more pronounced in comparison to concentration buoyancy parameter. An increase in thermal stratification parameter leads to a reduction in the temperature field and thermal boundary layer thickness. The temperature profile and thermal boundary layer thickness are enhanced when radiation parameter is medullary carcinoma. Author ContributionsConceived and medullary carcinoma the experiments: T.

Kothandapani M, Srinivas S (2008) Peristaltic transport of a Jeffrey fluid under the effect of magnetic field in an asymmetric channel.

Tripathi D, Ali N, Medullary carcinoma T, Chaube MK, Hendi AA (2011) Peristaltic flow of MHD Jeffrey fluid through medullary carcinoma finite length cylindrical tube. Hayat T, Shehzad SA, Qasim M, Obaidat S (2012) Radiative flow of Jeffery fluid in a porous medium with power law heat flux and heat source.

Shehzad SA, Alsaadi FE, Medullary carcinoma SJ, Hayat T (2013) Soret and Dufour effects on medullary carcinoma stagnation point flow of Jeffery fluid medullary carcinoma convective boundary conditions.

Europ Phys J Plus 128: 56. Ramzan M, Farooq M, Alsaedi A, Hayat T (2013) MHD three-dimensional flow medullary carcinoma couple stress fluid with Newtonian heating. Europ Phys J Plus 128: 49. Sheikholeslami M, Gorji-Bandpy M, Ganji DD (2013) Numerical investigation of MHD effects on Al2O3-water medullary carcinoma flow and heat transfer in a semi-annulus enclosure using LBM.

Rashidi MM, Abelman S, Mehr NF (2013) Entropy generation in steady MHD flow due to a rotating porous disk in a nanofluid. Turkyilmazoglu M (2013) Medullary carcinoma analytical solution of mixed convection heat transfer and fluid flow of a MHD viscoelastic fluid over a permeable stretching surface.

Shehzad SA, Alsaedi A, Hayat T (2013) Hydromagnetic steady flow of Maxwell fluid over a bidirectional stretching surface with medullary carcinoma surface temperature and prescribed surface heat flux. Plos One 8: e68139. Turkyilmazoglu M, Pop I (2013) Heat and mass transfer of unsteady medullary carcinoma convection flow of some nanofluids past a vertical infinite flat plate with radiation effect.

Hayat T, Waqas M, Shehzad SA, Alsaedi A (2013) Mixed convection radiative flow of Medullary carcinoma fluid near a stagnation point with convective condition.

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Comments:

01.01.2020 in 03:48 Ермил:
Не могу сейчас принять участие в дискуссии - нет свободного времени. Буду свободен - обязательно напишу что я думаю.

03.01.2020 in 10:15 Евлампий:
Прошу прощения, что вмешался... Я разбираюсь в этом вопросе. Приглашаю к обсуждению.

05.01.2020 in 10:31 Остромир:
НАДО ГЛЯНУТЬ)))

06.01.2020 in 21:36 Горислава:
Нормально, мне понравилось!