Tsutomu Indei

Affiliations: 
Chemical and Biological Engineering Illinois Institute of Technology, Chicago, IL, United States 
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"Tsutomu Indei"
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Karim M, Indei T, Schieber JD, et al. (2016) Determination of linear viscoelastic properties of an entangled polymer melt by probe rheology simulations. Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics. 93: 012501
Feng H, Córdoba A, Hernandez F, et al. (2016) A boundary integral method for computing forces on particles in unsteady Stokes and linear viscoelastic fluids International Journal For Numerical Methods in Fluids
Córdoba A, Schieber JD, Indei T. (2015) The role of filament length, finite-extensibility and motor force dispersity in stress relaxation and buckling mechanisms in non-sarcomeric active gels. Soft Matter. 11: 38-57
Indei T. (2014) Fluctuating junctions of physically cross-linked networks in a single-chain model. -Consistency between the relaxation modulus for small deformations and green-kubo predictions Nihon Reoroji Gakkaishi. 42: 111-121
Córdoba A, Schieber JD, Indei T. (2014) A single-chain model for active gels I: Active dumbbell model Rsc Advances. 4: 17935-17949
Schieber JD, Indei T. (2014) Correction of Doi-Edwards' Green function for a chain in a harmonic potential and its implication for the stress-optic rule Journal of Polymer Science, Part B: Polymer Physics. 52: 460-469
Schieber JD, Indei T, Steenbakkers RJA. (2013) Fluctuating entanglements in single-chain mean-field models Polymers. 5: 643-678
Córdoba A, Indei T, Schieber JD. (2013) The effects of compressibility, hydrodynamic interaction and inertia on two-point, passive microrheology of viscoelastic materials Soft Matter. 9: 3521-3534
Schieber JD, Córdoba A, Indei T. (2013) The analytic solution of Stokes for time-dependent creeping flow around a sphere: Application to linear viscoelasticity as an ingredient for the generalized Stokes-Einstein relation and microrheology analysis Journal of Non-Newtonian Fluid Mechanics. 200: 3-8
Karim M, Kohale SC, Indei T, et al. (2012) Determination of viscoelastic properties by analysis of probe-particle motion in molecular simulations. Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics. 86: 051501
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