Through means of this specific paper, we have likely embraced an investigation towards leading an examination in regards to “flow and heat transfer qualities in a second grade liquid through a permeable medium over a straight extending surface with two general cases, in particular PST and PHF, including the impact of viscous dissipation”. Subsequently, fractional differential conditions administering the idea of “flow and heat movement are changed over into non-linear customary differential conditions and limit conditions by utilizing suit-capable similitude change”, was regularly being thought of. Accordingly, the proposed issue identifying with our paper, was fundamentally being addressed systematically, by methods for power arrangement strategy, wherein subsequently graphical outcomes for “speed, skin-grinding coefficient, and temperature for PST and PHF cases are also introduced and talked about, close by thought of mathematical qualities identifying with divider grating coefficient, divider temperature slope θη (0), and divider temperature θ (0)” were in like manner being determined, organized, & examined subsequently.
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21 June 2023
2ND INTERNATIONAL CONFERENCE ON RECENT TRENDS IN APPLIED AND COMPUTATIONAL MATHEMATICS: ICRTACM-2021
8–9 October 2021
Bengaluru, India
Research Article|
June 21 2023
Mathematical analysis of heat dissemination via porous medium over stretching sheet with impact relating to viscous dissipation
Omkar. C. Kadale;
Omkar. C. Kadale
a)
1
VTU Research Centre, Department of Mathematics, Bheemanna Khandre Institute of Technology
Bhalki-585328, Bidar, Karnataka, India
a)Corresponding author:[email protected]
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Ashokkumar Koti
Ashokkumar Koti
b)
1
VTU Research Centre, Department of Mathematics, Bheemanna Khandre Institute of Technology
Bhalki-585328, Bidar, Karnataka, India
Search for other works by this author on:
a)Corresponding author:[email protected]
AIP Conf. Proc. 2649, 030052 (2023)
Citation
Omkar. C. Kadale, Ashokkumar Koti; Mathematical analysis of heat dissemination via porous medium over stretching sheet with impact relating to viscous dissipation. AIP Conf. Proc. 21 June 2023; 2649 (1): 030052. https://doi.org/10.1063/5.0114360
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