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Number of items: **10**.

Bera, P K and Kandar, A K and Krishnaswamy, R and Sood, A K
(2019)
*Experimental signatures of a nonequilibrium phase transition near the crossover point of a Langmuir monolayer.*
In: JOURNAL OF PHYSICS-CONDENSED MATTER, 31
(50).

Krishnaswamy, R and Sood, AK
(2010)
*Growth, self-assembly and dynamics of nano-scale films at fluid interfaces.*
In: Journal of Materials Chemistry, 20
(18).
pp. 3539-3552.

Ghosh, SK and Ganapathy, R and Krishnaswamy, R and Bellare, J and Raghunathan, VA and Sood, AK
(2007)
*Structure of Mesh Phases in a Cationic Surfactant System with Strongly Bound Counterions.*
In: Langmuir, 23
(7).
3606 - 3614.

Krishnaswamy, R and Ghosh, SK and Lakshmanan, S and Raghunathan, VA and Sood, AK
(2005)
*Phase behavior of concentrated aqueous solutions of cetyltrimethylammonium bromide (CTAB) and sodium hydroxy naphthoate (SHN).*
In: Langmuir, 21
(23).
pp. 10439-10443.

Krishnaswamy, R and Mitra, P and Raghunathan, VA and Sood, AK
(2003)
*Tuning the structure of surfactant complexes with DNA and other polyelectrolytes.*
In: EPL: Europhysics Letters, 62
(3).
pp. 357-362.

Krishnaswamy, R and Nath, G
(1982)
*Compressible boundary-layer flow at a three-dimensional stagnation point with massive blowing.*
In: International Journal of Heat and Mass Transfer, 25
(11).
1639 -1649.

Krishnaswamy, R and Nath, G
(1982)
*Compressible 2nd-order boundary-layers for 3-dimensional stagnation point flows with mass-transfer.*
In: International Journal of Engineering Science, 20
(11).
pp. 1221-1233.

Krishnaswamy, R and Nath, G
(1982)
*Compressible second-order boundary layers for three-dimensional stagnation point flows with mass transfer.*
In: International Journal of Engineering Science, 20
(11).
1221 -1233.

Krishnaswamy, R and Nath, G
(1982)
*A parametric differentiation version with finite-difference scheme applicable to a class of problems in boundary layer flow with massive blowing.*
In: Computers & Fluids, 10
(1).
pp. 1-6.

Krishnaswamy, R and Nath, G
(1979)
*Hypersonic stagnationâpoint boundary layers with massive blowing in the presence of a magnetic field.*
In: Physics of Fluids, 22
(9).
pp. 1631-1638.