Beg, OA
92  Ergebnisse:
Personensuche X
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1

Cancer drug therapy and stochastic modeling of "nano-motors:

Sherin, Lubna ; Farwa, Shabieh ; Sohail, Ayesha..
International Journal of Nanomedicine.  13 (2018)  - p. 6429-6440 , 2018
 
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2

Local non-similar solution for non-isothermal electro-condu..:

Ferdows, M ; Barman, A ; Beg, OA..
https://usir.salford.ac.uk/id/eprint/66631/1/APPLIED%20SCIENCES%20LNM%20magnetic%20non%20isothermal%20boundary%20layers%20accepted%20March%2021st%202023.pdf.  , 2023
 
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3

Computational study of MHD mixed convective flow of Cu/Al2O..:

Santhosh, N ; Sivaraj, S ; Prasad, VR...
https://usir.salford.ac.uk/id/eprint/66164/1/WAVES%20IN%20RANDOM%20AND%20COMPLEX%20MEDIA%20magnetonanofluid%20fuel%20cell%20SLITS%20Joule%20HEATING%20accepted%20Jan%2012th%202023.pdf.  , 2023
 
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4

Numerical investigation on transient third-grade magnetized..:

Hiremath, A ; Reddy, GJ ; Beg, OA.
https://usir.salford.ac.uk/id/eprint/62629/1/WAVES%20IN%20RANDOM%20COMPLEX%20MEDIA%20transient%20magnetoviscoelastic%20smart%20coating%20cylinder%20Accepted%20Dec%2027th%202021.pdf.  , 2022
 
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5

Computation of magnetohydrodynamic electro-osmotic modulate..:

Balaji, R ; Prakash, J ; Tripathi, D.
https://usir.salford.ac.uk/id/eprint/62844/1/COLLOIDS%20and%20SURFACES%20A%20accepted%20ELECTROOSMOTIC%20magnetic%20squeezing%20zeta%20potential%20TRIBOLOGY%20Jan%2025th%202022.pdf.  , 2022
 
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6

Moment analysis of unsteady bi-component species (drug) tra..:

Beg, OA ; Roy, AK
https://usir.salford.ac.uk/id/eprint/63577/1/Chinese%20J%20Physics%20Reactive%20bicomponent%20statistical%20dispersion%20hemodynamic%20modelling%20April%208th%202022%20accepted.pdf.  , 2022
 
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7

Cattaneo-Christov dual diffusive non-Newtonian nanoliquid f..:

Beg, OA ; Nasir, M ; Waqas, M..
http://usir.salford.ac.uk/id/eprint/63934/1/Chin%20J%20Physics%20DUAL%20DIFFUSIVE%20CATTANEO%20CHRISTOV%20VISCOELASTIC%20nanocoating%20flow%20May%2014th%202022%20accepted.pdf.  , 2022
 
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8

Chemically reactive Maxwell nanoliquid flow by a stretching..:

Nasir, M ; Waqas, M ; Beg, OA...
http://usir.salford.ac.uk/id/eprint/63212/1/NANOTECH%20REVIEWS%20Maxwell%20viscoelastic%20nanopolymer%20coating%20Accepted%20Feb%2017th%202022.pdf.  , 2022
 
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9

Numerical study of time-dependent flow of immiscible Saffma..:

Chandrawat, RC ; Joshi, V ; Beg, OA
https://usir.salford.ac.uk/id/eprint/62349/1/ICHMT%20Saffman%20dusty%20Eringen%20micropolar%20unsteady%20duct%20hydrodynamics%20Accepted%20Nov%2012th%202021.pdf.  , 2022
 
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10

Electroosmotic modulated unsteady squeezing flow with tempe..:

Prakash, J ; Tripathi, D ; Beg, OA.
https://usir.salford.ac.uk/id/eprint/62835/1/J%20PHYSICS%20-%20CONDENSED%20MATTER%20eletrofluid%20squeezing%20simulation%20accepted%20JAN%2024TH%202022.pdf.  , 2022
 
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11

Influence of magnetization, variable viscosity and thermal ..:

Salawu, SO ; Shamshuddin, M ; Beg, OA
http://usir.salford.ac.uk/id/eprint/63221/1/MAT%20SCIENCE%20ENG%20B%20ferrofluid%20nano%20spin%20coating%20simulation%20Accepted%20Feb%2018th%202022.pdf.  , 2022
 
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12

Dynamics of tangent-hyperbolic nanoliquids configured by st..:

Nasir, M ; Waqas, M ; Beg, OA...
https://usir.salford.ac.uk/id/eprint/64721/1/ICHMT%20accepted%20Sep%203rd%202022%20tangent%20hyperbolic%20radiative%20nanocoating%20dynamics.pdf.  , 2022
 
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13

Computation of reactive thermosolutal micropolar nanofluid ..:

Shamshuddin, M ; Ferdows, M ; Beg, OA..
https://usir.salford.ac.uk/id/eprint/63317/1/WAVES%20IN%20RANDOM%20AND%20COMPLEX%20MEDIA%20accepted%20Micropolar%20Nano%20Sakiadis%20flow%20March%205th%202022.pdf.  , 2022
 
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14

Analysis of nonlinear convection-radiation in chemically re..:

Nasir, M ; Waqas, M ; Beg, OA.
https://usir.salford.ac.uk/id/eprint/65992/1/MDPI%20Micromachines%20Journal%20Oldroyd%20B%20viscolastic%20stagnation%20robotic%20nanocoating%20Accepted%20DEC%208TH%202022.pdf.  , 2022
 
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15

Electro-magnetohydrodynamics hybrid nanofluid flow with gol..:

Bhatti, MM ; Beg, OA ; Ellahi, R..
https://usir.salford.ac.uk/id/eprint/65410/1/accepted%20JMMM%20gold%20magnesium%20nano%20electro%20magneto%20dynamic%20flow%20OCT%2028TH%202022.pdf.  , 2022
 
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