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Image Search Results
Journal: Scientific Reports
Article Title: Significance of magnetic Reynolds number in a three-dimensional squeezing Darcy–Forchheimer hydromagnetic nanofluid thin-film flow between two rotating disks
doi: 10.1038/s41598-020-74142-5
Figure Lengend Snippet: Axial component of an induced magnetic field for Re m . Image generated by using MATLAB 2015a https://www.mathworks.com/help/simulink/release-notes-R2015a.html .
Article Snippet: Figure 11 Tangential component of induced magnetic field for R . Image generated by using
Techniques: Generated
Journal: Scientific Reports
Article Title: Significance of magnetic Reynolds number in a three-dimensional squeezing Darcy–Forchheimer hydromagnetic nanofluid thin-film flow between two rotating disks
doi: 10.1038/s41598-020-74142-5
Figure Lengend Snippet: Tangential component of an induced magnetic field for Re m . Image generated by using MATLAB 2015a https://www.mathworks.com/help/simulink/release-notes-R2015a.html .
Article Snippet: Figure 11 Tangential component of induced magnetic field for R . Image generated by using
Techniques: Generated
Journal: Scientific Reports
Article Title: Significance of magnetic Reynolds number in a three-dimensional squeezing Darcy–Forchheimer hydromagnetic nanofluid thin-film flow between two rotating disks
doi: 10.1038/s41598-020-74142-5
Figure Lengend Snippet: Axial velocity profile for R 1 . Image generated by using MATLAB 2015a https://www.mathworks.com/help/simulink/release-notes-R2015a.html .
Article Snippet: Figure 11 Tangential component of induced magnetic field for R . Image generated by using
Techniques: Generated
Journal: Scientific Reports
Article Title: Significance of magnetic Reynolds number in a three-dimensional squeezing Darcy–Forchheimer hydromagnetic nanofluid thin-film flow between two rotating disks
doi: 10.1038/s41598-020-74142-5
Figure Lengend Snippet: Tangential velocity profile for R 1 . Image generated by using MATLAB 2015a https://www.mathworks.com/help/simulink/release-notes-R2015a.html .
Article Snippet: Figure 11 Tangential component of induced magnetic field for R . Image generated by using
Techniques: Generated
Journal: Scientific Reports
Article Title: Significance of magnetic Reynolds number in a three-dimensional squeezing Darcy–Forchheimer hydromagnetic nanofluid thin-film flow between two rotating disks
doi: 10.1038/s41598-020-74142-5
Figure Lengend Snippet: Axial component of induced magnetic field for R 1 . Image generated by using MATLAB 2015a https://www.mathworks.com/help/simulink/release-notes-R2015a.html .
Article Snippet: Figure 11 Tangential component of induced magnetic field for R . Image generated by using
Techniques: Generated
Journal: Scientific Reports
Article Title: Significance of magnetic Reynolds number in a three-dimensional squeezing Darcy–Forchheimer hydromagnetic nanofluid thin-film flow between two rotating disks
doi: 10.1038/s41598-020-74142-5
Figure Lengend Snippet: Tangential component induced magnetic field for R 1 . Image generated by using MATLAB 2015a https://www.mathworks.com/help/simulink/release-notes-R2015a.html .
Article Snippet: Figure 11 Tangential component of induced magnetic field for R . Image generated by using
Techniques: Generated
Journal: Scientific Reports
Article Title: Significance of magnetic Reynolds number in a three-dimensional squeezing Darcy–Forchheimer hydromagnetic nanofluid thin-film flow between two rotating disks
doi: 10.1038/s41598-020-74142-5
Figure Lengend Snippet: Axial velocity profile for R 2 . Image generated by using MATLAB 2015a https://www.mathworks.com/help/simulink/release-notes-R2015a.html .
Article Snippet: Figure 11 Tangential component of induced magnetic field for R . Image generated by using
Techniques: Generated
Journal: Scientific Reports
Article Title: Significance of magnetic Reynolds number in a three-dimensional squeezing Darcy–Forchheimer hydromagnetic nanofluid thin-film flow between two rotating disks
doi: 10.1038/s41598-020-74142-5
Figure Lengend Snippet: Tangential velocity profile for R 2 . Image generated by using MATLAB 2015a https://www.mathworks.com/help/simulink/release-notes-R2015a.html .
Article Snippet: Figure 11 Tangential component of induced magnetic field for R . Image generated by using
Techniques: Generated
Journal: Scientific Reports
Article Title: Significance of magnetic Reynolds number in a three-dimensional squeezing Darcy–Forchheimer hydromagnetic nanofluid thin-film flow between two rotating disks
doi: 10.1038/s41598-020-74142-5
Figure Lengend Snippet: Axial component of induced magnetic field for R 2 . Image generated by using MATLAB 2015a https://www.mathworks.com/help/simulink/release-notes-R2015a.html .
Article Snippet: Figure 11 Tangential component of induced magnetic field for R . Image generated by using
Techniques: Generated
Journal: Scientific Reports
Article Title: Significance of magnetic Reynolds number in a three-dimensional squeezing Darcy–Forchheimer hydromagnetic nanofluid thin-film flow between two rotating disks
doi: 10.1038/s41598-020-74142-5
Figure Lengend Snippet: Tangential component of induced magnetic field for R 2 . Image generated by using MATLAB 2015a https://www.mathworks.com/help/simulink/release-notes-R2015a.html .
Article Snippet: Figure 11 Tangential component of induced magnetic field for R . Image generated by using
Techniques: Generated
Journal: Scientific Reports
Article Title: Significance of magnetic Reynolds number in a three-dimensional squeezing Darcy–Forchheimer hydromagnetic nanofluid thin-film flow between two rotating disks
doi: 10.1038/s41598-020-74142-5
Figure Lengend Snippet: Upper disk torque for R 2 . Image generated by using MATLAB 2015a https://www.mathworks.com/help/simulink/release-notes-R2015a.html .
Article Snippet: Figure 11 Tangential component of induced magnetic field for R . Image generated by using
Techniques: Generated
Journal: Scientific Reports
Article Title: Significance of magnetic Reynolds number in a three-dimensional squeezing Darcy–Forchheimer hydromagnetic nanofluid thin-film flow between two rotating disks
doi: 10.1038/s41598-020-74142-5
Figure Lengend Snippet: Variation of temperature profile for Pr. Image generated by using MATLAB 2015a https://www.mathworks.com/help/simulink/release-notes-R2015a.html .
Article Snippet: Figure 11 Tangential component of induced magnetic field for R . Image generated by using
Techniques: Generated
Journal: Scientific Reports
Article Title: Significance of magnetic Reynolds number in a three-dimensional squeezing Darcy–Forchheimer hydromagnetic nanofluid thin-film flow between two rotating disks
doi: 10.1038/s41598-020-74142-5
Figure Lengend Snippet: Axial velocity profile for S . Image generated by using MATLAB 2015a https://www.mathworks.com/help/simulink/release-notes-R2015a.html .
Article Snippet: Figure 11 Tangential component of induced magnetic field for R . Image generated by using
Techniques: Generated
Journal: Scientific Reports
Article Title: Significance of magnetic Reynolds number in a three-dimensional squeezing Darcy–Forchheimer hydromagnetic nanofluid thin-film flow between two rotating disks
doi: 10.1038/s41598-020-74142-5
Figure Lengend Snippet: Tangential velocity profile for S . Image generated by using MATLAB 2015a https://www.mathworks.com/help/simulink/release-notes-R2015a.html .
Article Snippet: Figure 11 Tangential component of induced magnetic field for R . Image generated by using
Techniques: Generated
Journal: Scientific Reports
Article Title: Significance of magnetic Reynolds number in a three-dimensional squeezing Darcy–Forchheimer hydromagnetic nanofluid thin-film flow between two rotating disks
doi: 10.1038/s41598-020-74142-5
Figure Lengend Snippet: Axial induced magnetic field for S . Image generated by using MATLAB 2015a https://www.mathworks.com/help/simulink/release-notes-R2015a.html .
Article Snippet: Figure 11 Tangential component of induced magnetic field for R . Image generated by using
Techniques: Generated
Journal: Scientific Reports
Article Title: Significance of magnetic Reynolds number in a three-dimensional squeezing Darcy–Forchheimer hydromagnetic nanofluid thin-film flow between two rotating disks
doi: 10.1038/s41598-020-74142-5
Figure Lengend Snippet: Tangential induced magnetic field for S . Image generated by using MATLAB 2015a https://www.mathworks.com/help/simulink/release-notes-R2015a.html .
Article Snippet: Figure 11 Tangential component of induced magnetic field for R . Image generated by using
Techniques: Generated
Journal: Scientific Reports
Article Title: Significance of magnetic Reynolds number in a three-dimensional squeezing Darcy–Forchheimer hydromagnetic nanofluid thin-film flow between two rotating disks
doi: 10.1038/s41598-020-74142-5
Figure Lengend Snippet: Variation of concentration profile for k 1 and k 2 . Image generated by using MATLAB 2015a https://www.mathworks.com/help/simulink/release-notes-R2015a.html .
Article Snippet: Figure 11 Tangential component of induced magnetic field for R . Image generated by using
Techniques: Concentration Assay, Generated
Journal: Scientific Reports
Article Title: Significance of magnetic Reynolds number in a three-dimensional squeezing Darcy–Forchheimer hydromagnetic nanofluid thin-film flow between two rotating disks
doi: 10.1038/s41598-020-74142-5
Figure Lengend Snippet: Variation of concentration profile for Sc . Image generated by using MATLAB 2015a https://www.mathworks.com/help/simulink/release-notes-R2015a.html .
Article Snippet: Figure 11 Tangential component of induced magnetic field for R . Image generated by using
Techniques: Concentration Assay, Generated
Journal: Scientific Reports
Article Title: Significance of magnetic Reynolds number in a three-dimensional squeezing Darcy–Forchheimer hydromagnetic nanofluid thin-film flow between two rotating disks
doi: 10.1038/s41598-020-74142-5
Figure Lengend Snippet: Variation of a tangential velocity profile for C 1 . Image generated by using MATLAB 2015a https://www.mathworks.com/help/simulink/release-notes-R2015a.html1 .
Article Snippet: Figure 11 Tangential component of induced magnetic field for R . Image generated by using
Techniques: Generated