|
Miller Marek, Scalici Manfredi, Fellous-Asian Marco, Streltsov Alexander, Power of noisy quantum states and the advantage of resource dilution, PHYSICAL REVIEW A, 109, 022404-1-022404-13, 2024 |  |
|
Miller Marek, Wu Kang-Da, Scalici Manfredi, Kołodyński Jan, Xiang Guo-Yong, Li Chuan-Feng, Guo Guang-Can, Streltsov Alexander, Optimally preserving quantum correlations and oherence with eternally non-Markovian dynamics, NEW JOURNAL OF PHYSICS, 24, 1-14, 2022 |  |
|
Minafò G., Rezaee-Hajidehi M., Giambanco G., A mechanical approach for evaluating the distribution of confinement pressure in FRP-wrapped rectangular columns, JOURNAL OF ENGINEERING MECHANICS-ASCE, 145, 12, 04019092-1-9, 2019 |  |
|
Mines R.C., Lipniacki T., Shen X., Slow nucleosome dynamics set the transcriptional speed limit and induce RNA polymerase II traffic jams and bursts, PLOS COMPUTATIONAL BIOLOGY, 18, 2, e1009811-1-35, 2022 |  |
|
Mirajkar Harish N., Mukherjee Partho, Balasubramanian Sridhar, On the dynamics of buoyant jets in a linearly stratified ambient , PHYSICS OF FLUIDS, 35, 1, 016609-1-10, 2023 |  |
|
Mirajkar Harish N., Mukherjee Partho, Balasubramanian Sridhar, PIV STUDY OF THE DYNAMICS OF A FORCED PLUME IN A STRATIFIED AMBIENT, JOURNAL OF FLOW VISUALIZATION AND IMAGE PROCESSING, 27, 1, 29-45, 2020 |  |
|
Mirajkar Harish N., Tirodkar Siddhesh, Balasubramanian Sridhar, Experimental study on growth and spread of dispersed particle-laden plume in a linearly stratified environment, ENVIRONMENTAL FLUID MECHANICS, 15, 1241-1262, 2015 |  |
|
Mirajkar Harish N.,Balasubramanian S., Effects of Varying Ambient Stratification Strengths on the Dynamics of a Turbulent Buoyant Plume, JOURNAL OF HYDRAULIC ENGINEERING, 14, 7, 04017013-1-10, 2017 |  |
|
Misztal-Faraj B., A simple model of plate-like crystallization with constant plate thickness, JOURNAL OF MATERIALS RESEARCH, 28, 9, 1224-1238, 2013 |  |
|
Misztal-Faraj B., Jarecki L., Pęcherski R. B., Modeling of the kinetics of polymorphic isothermal crystallization of poly (L-lactide) subjected to uniaxial molecular orientation, POLYMER, 281, 126126-1-17, 2023 |  |
|
Misztal-Faraj B., Jarecki L., Pęcherski R.B., Kinetic model of polymer crystallization under high tensile stress or molecular orientation, SOLMECH 2018, 41ST SOLID MECHANICS CONFERENCE, 2018-08-27/08-31, WARSZAWA (PL), 224-225, 2018 |  |
|
Misztal-Faraj B., Pęcherski R.B., Denis P., Jarecki L., Modeling of oriented crystallization kinetics of polymers in the entire range of uniaxial molecular orientation, POLYMER, 173, 141-157, 2019 |  |
|
Misztal-Faraj B., Sajkiewicz P., Savytskyy H., Bonchyk O., Gradys A., Ziabicki A., Following phase transitions by depolarizing light intensity. The experimental setup, POLYMER TESTING, 28, 36-41, 2009 |  |
|
Misztal-Faraj B., Ziabicki A., Effects of predetermined nuclei and limited transformation on polymorphic crystallization in a model polymer, JOURNAL OF APPLIED POLYMER SCIENCE, 125, 6, 4243-4251, 2012 |  |
|
Misztal-Faraj B., Ziabicki A., Modeling of phase transitions in three-phase polymorphic systems: Part II. Effects of material characteristics on transition rates, JOURNAL OF MATERIALS RESEARCH, 26, 13, 1596-1604, 2011 |  |