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You searched for subject:(Spherical confinement). Showing records 1 – 9 of 9 total matches.

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1. Dasgupta, Tonnishtha. Colloidal crystallization in bulk, gravity and spherical confinement.

Degree: 2019, University Utrecht

 This thesis investigates, using computer simulations, various aspects of colloidal crystallization in unconfined bulk systems, in a gravitational field, and inside a spherical confinement, with… (more)

Subjects/Keywords: proefschrift; computer simulations; colloids; photonic crystals; nucleation; sedimentation; self-assembly; binary crystals; Laves phases; thermodynamic phase behaviour; spherical confinement

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APA · Chicago · MLA · Vancouver · CSE | Export to Zotero / EndNote / Reference Manager

APA (6th Edition):

Dasgupta, T. (2019). Colloidal crystallization in bulk, gravity and spherical confinement. (Doctoral Dissertation). University Utrecht. Retrieved from https://dspace.library.uu.nl/handle/1874/375841 ; URN:NBN:NL:UI:10-1874-375841 ; 1874/375841 ; urn:isbn:9789039371022 ; URN:NBN:NL:UI:10-1874-375841 ; https://dspace.library.uu.nl/handle/1874/375841

Chicago Manual of Style (16th Edition):

Dasgupta, Tonnishtha. “Colloidal crystallization in bulk, gravity and spherical confinement.” 2019. Doctoral Dissertation, University Utrecht. Accessed December 05, 2020. https://dspace.library.uu.nl/handle/1874/375841 ; URN:NBN:NL:UI:10-1874-375841 ; 1874/375841 ; urn:isbn:9789039371022 ; URN:NBN:NL:UI:10-1874-375841 ; https://dspace.library.uu.nl/handle/1874/375841.

MLA Handbook (7th Edition):

Dasgupta, Tonnishtha. “Colloidal crystallization in bulk, gravity and spherical confinement.” 2019. Web. 05 Dec 2020.

Vancouver:

Dasgupta T. Colloidal crystallization in bulk, gravity and spherical confinement. [Internet] [Doctoral dissertation]. University Utrecht; 2019. [cited 2020 Dec 05]. Available from: https://dspace.library.uu.nl/handle/1874/375841 ; URN:NBN:NL:UI:10-1874-375841 ; 1874/375841 ; urn:isbn:9789039371022 ; URN:NBN:NL:UI:10-1874-375841 ; https://dspace.library.uu.nl/handle/1874/375841.

Council of Science Editors:

Dasgupta T. Colloidal crystallization in bulk, gravity and spherical confinement. [Doctoral Dissertation]. University Utrecht; 2019. Available from: https://dspace.library.uu.nl/handle/1874/375841 ; URN:NBN:NL:UI:10-1874-375841 ; 1874/375841 ; urn:isbn:9789039371022 ; URN:NBN:NL:UI:10-1874-375841 ; https://dspace.library.uu.nl/handle/1874/375841


University of Waterloo

2. Pansri, Siriporn. Spherically Confined Polymers: Monte Carlo Simulations with Expanded Ensemble Density-of-States Method.

Degree: 2018, University of Waterloo

 In this thesis, the Expanded Ensemble Density-of-States (EXEDOS) method - a combination of the Wang-Landau and Expanded Ensemble Monte Carlo algorithms is employed to investigate… (more)

Subjects/Keywords: DNA; Monte Carlo; Wang-Landau; Expanded Ensemble Density-of-States; Spherical confinement; polymers

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APA (6th Edition):

Pansri, S. (2018). Spherically Confined Polymers: Monte Carlo Simulations with Expanded Ensemble Density-of-States Method. (Thesis). University of Waterloo. Retrieved from http://hdl.handle.net/10012/13012

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Chicago Manual of Style (16th Edition):

Pansri, Siriporn. “Spherically Confined Polymers: Monte Carlo Simulations with Expanded Ensemble Density-of-States Method.” 2018. Thesis, University of Waterloo. Accessed December 05, 2020. http://hdl.handle.net/10012/13012.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

MLA Handbook (7th Edition):

Pansri, Siriporn. “Spherically Confined Polymers: Monte Carlo Simulations with Expanded Ensemble Density-of-States Method.” 2018. Web. 05 Dec 2020.

Vancouver:

Pansri S. Spherically Confined Polymers: Monte Carlo Simulations with Expanded Ensemble Density-of-States Method. [Internet] [Thesis]. University of Waterloo; 2018. [cited 2020 Dec 05]. Available from: http://hdl.handle.net/10012/13012.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Council of Science Editors:

Pansri S. Spherically Confined Polymers: Monte Carlo Simulations with Expanded Ensemble Density-of-States Method. [Thesis]. University of Waterloo; 2018. Available from: http://hdl.handle.net/10012/13012

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation


Universiteit Utrecht

3. de Nijs, B. Towards Crystals of Crystals of NanoCrystals : a Self-Assembly Study.

Degree: 2014, Universiteit Utrecht

 In this thesis several methods to synthesise monodisperse nanoparticles and how to self-assembled them within emulsion droplets are presented. The self-assembly behaviour of nanoparticles within… (more)

Subjects/Keywords: self-assembly; hard-spheres; nanoparticles; tomography; photoluminescence; quantumdots; spherical confinement; colloids; supraparticles

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APA (6th Edition):

de Nijs, B. (2014). Towards Crystals of Crystals of NanoCrystals : a Self-Assembly Study. (Doctoral Dissertation). Universiteit Utrecht. Retrieved from http://dspace.library.uu.nl:8080/handle/1874/302981

Chicago Manual of Style (16th Edition):

de Nijs, B. “Towards Crystals of Crystals of NanoCrystals : a Self-Assembly Study.” 2014. Doctoral Dissertation, Universiteit Utrecht. Accessed December 05, 2020. http://dspace.library.uu.nl:8080/handle/1874/302981.

MLA Handbook (7th Edition):

de Nijs, B. “Towards Crystals of Crystals of NanoCrystals : a Self-Assembly Study.” 2014. Web. 05 Dec 2020.

Vancouver:

de Nijs B. Towards Crystals of Crystals of NanoCrystals : a Self-Assembly Study. [Internet] [Doctoral dissertation]. Universiteit Utrecht; 2014. [cited 2020 Dec 05]. Available from: http://dspace.library.uu.nl:8080/handle/1874/302981.

Council of Science Editors:

de Nijs B. Towards Crystals of Crystals of NanoCrystals : a Self-Assembly Study. [Doctoral Dissertation]. Universiteit Utrecht; 2014. Available from: http://dspace.library.uu.nl:8080/handle/1874/302981

4. de Nijs, B. Towards Crystals of Crystals of NanoCrystals : a Self-Assembly Study.

Degree: 2014, University Utrecht

 In this thesis several methods to synthesise monodisperse nanoparticles and how to self-assembled them within emulsion droplets are presented. The self-assembly behaviour of nanoparticles within… (more)

Subjects/Keywords: self-assembly; hard-spheres; nanoparticles; tomography; photoluminescence; quantumdots; spherical confinement; colloids; supraparticles

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APA (6th Edition):

de Nijs, B. (2014). Towards Crystals of Crystals of NanoCrystals : a Self-Assembly Study. (Doctoral Dissertation). University Utrecht. Retrieved from https://dspace.library.uu.nl/handle/1874/302981 ; URN:NBN:NL:UI:10-1874-302981 ; urn:isbn:978-94-6108-859-8 ; URN:NBN:NL:UI:10-1874-302981 ; https://dspace.library.uu.nl/handle/1874/302981

Chicago Manual of Style (16th Edition):

de Nijs, B. “Towards Crystals of Crystals of NanoCrystals : a Self-Assembly Study.” 2014. Doctoral Dissertation, University Utrecht. Accessed December 05, 2020. https://dspace.library.uu.nl/handle/1874/302981 ; URN:NBN:NL:UI:10-1874-302981 ; urn:isbn:978-94-6108-859-8 ; URN:NBN:NL:UI:10-1874-302981 ; https://dspace.library.uu.nl/handle/1874/302981.

MLA Handbook (7th Edition):

de Nijs, B. “Towards Crystals of Crystals of NanoCrystals : a Self-Assembly Study.” 2014. Web. 05 Dec 2020.

Vancouver:

de Nijs B. Towards Crystals of Crystals of NanoCrystals : a Self-Assembly Study. [Internet] [Doctoral dissertation]. University Utrecht; 2014. [cited 2020 Dec 05]. Available from: https://dspace.library.uu.nl/handle/1874/302981 ; URN:NBN:NL:UI:10-1874-302981 ; urn:isbn:978-94-6108-859-8 ; URN:NBN:NL:UI:10-1874-302981 ; https://dspace.library.uu.nl/handle/1874/302981.

Council of Science Editors:

de Nijs B. Towards Crystals of Crystals of NanoCrystals : a Self-Assembly Study. [Doctoral Dissertation]. University Utrecht; 2014. Available from: https://dspace.library.uu.nl/handle/1874/302981 ; URN:NBN:NL:UI:10-1874-302981 ; urn:isbn:978-94-6108-859-8 ; URN:NBN:NL:UI:10-1874-302981 ; https://dspace.library.uu.nl/handle/1874/302981

5. Vallet, Alexandra. Hydrodynamic modelling of the shock ignition scheme for inertial confinement fusion : Modélisation hydrodynamique du schéma d'allumage par choc pour la fusion par confinement inertiel.

Degree: Docteur es, Astrophysique, plasmas, nucléaire, 2014, Bordeaux

Le schéma d'allumage par choc pour la fusion par confinement inertiel utilise une impulsion laser intense à la fin d'une phase d'assemblage de combustible. Les… (more)

Subjects/Keywords: Allumage par choc; Fusion par confinement inertiel; Choc sphérique; Solution auto-semblable,; Dynamique du choc; Pression d'ablation; Eléctrons chauds; Shock ignition; Inertial confinement fusion; Spherical shock wave; Self-similar solution; Perturbative approach; Shock dynamics; Ablation pressure; Hot-electrons

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APA (6th Edition):

Vallet, A. (2014). Hydrodynamic modelling of the shock ignition scheme for inertial confinement fusion : Modélisation hydrodynamique du schéma d'allumage par choc pour la fusion par confinement inertiel. (Doctoral Dissertation). Bordeaux. Retrieved from http://www.theses.fr/2014BORD0214

Chicago Manual of Style (16th Edition):

Vallet, Alexandra. “Hydrodynamic modelling of the shock ignition scheme for inertial confinement fusion : Modélisation hydrodynamique du schéma d'allumage par choc pour la fusion par confinement inertiel.” 2014. Doctoral Dissertation, Bordeaux. Accessed December 05, 2020. http://www.theses.fr/2014BORD0214.

MLA Handbook (7th Edition):

Vallet, Alexandra. “Hydrodynamic modelling of the shock ignition scheme for inertial confinement fusion : Modélisation hydrodynamique du schéma d'allumage par choc pour la fusion par confinement inertiel.” 2014. Web. 05 Dec 2020.

Vancouver:

Vallet A. Hydrodynamic modelling of the shock ignition scheme for inertial confinement fusion : Modélisation hydrodynamique du schéma d'allumage par choc pour la fusion par confinement inertiel. [Internet] [Doctoral dissertation]. Bordeaux; 2014. [cited 2020 Dec 05]. Available from: http://www.theses.fr/2014BORD0214.

Council of Science Editors:

Vallet A. Hydrodynamic modelling of the shock ignition scheme for inertial confinement fusion : Modélisation hydrodynamique du schéma d'allumage par choc pour la fusion par confinement inertiel. [Doctoral Dissertation]. Bordeaux; 2014. Available from: http://www.theses.fr/2014BORD0214


Texas A&M University

6. D'Lima, Michelle Lynn. Development of a Thermodynamic Model for Fluids Confined in Spherical Pores.

Degree: MS, Chemical Engineering, 2014, Texas A&M University

 The thermodynamic properties of a fluid confined in extremely small pores can be substantially different from those observed of the same bulk fluid. These differences… (more)

Subjects/Keywords: Confinement; Adsorption; Peng-Robinson; Equation of State; Spherical pores

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APA (6th Edition):

D'Lima, M. L. (2014). Development of a Thermodynamic Model for Fluids Confined in Spherical Pores. (Masters Thesis). Texas A&M University. Retrieved from http://hdl.handle.net/1969.1/153385

Chicago Manual of Style (16th Edition):

D'Lima, Michelle Lynn. “Development of a Thermodynamic Model for Fluids Confined in Spherical Pores.” 2014. Masters Thesis, Texas A&M University. Accessed December 05, 2020. http://hdl.handle.net/1969.1/153385.

MLA Handbook (7th Edition):

D'Lima, Michelle Lynn. “Development of a Thermodynamic Model for Fluids Confined in Spherical Pores.” 2014. Web. 05 Dec 2020.

Vancouver:

D'Lima ML. Development of a Thermodynamic Model for Fluids Confined in Spherical Pores. [Internet] [Masters thesis]. Texas A&M University; 2014. [cited 2020 Dec 05]. Available from: http://hdl.handle.net/1969.1/153385.

Council of Science Editors:

D'Lima ML. Development of a Thermodynamic Model for Fluids Confined in Spherical Pores. [Masters Thesis]. Texas A&M University; 2014. Available from: http://hdl.handle.net/1969.1/153385


University of Alberta

7. Friesen, Hal. Kirkpatrick-Baez Microscope for Hard X-Ray Imaging of Fast Ignition Experiments.

Degree: MS, Electrical & Computer Engineering, 2011, University of Alberta

 Fast ignition (FI) decouples the compression and ignition in normal Inertial Confinement Fusion schemes, and can rely on hot electron transport to ignite the compressed… (more)

Subjects/Keywords: Inertial Confinement Fusion; sputtering; preplasma emission; chirped-pulse amplification; Hot electrons; clean energy; copper K-alpha; preplasma scalelength; imaging; line-spread function; ray-tracing; Bremsstrahlung; thermonuclear fusion; cone-wire; KB microscope; x-ray tube; mirror bending; preplasma; laser-plasma interaction; high-intensity; Reflectivity; superpolished; star power; instrumentation; x-ray imaging; wire transport; diagnostic; laser; Resolution; grazing-incidence; point-spread function; re-entrant; plasma; prepulse; Fast Ignition; platinum-coated; alternative energy; absorption; multilayer mirror; spherical; raytracing

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APA (6th Edition):

Friesen, H. (2011). Kirkpatrick-Baez Microscope for Hard X-Ray Imaging of Fast Ignition Experiments. (Masters Thesis). University of Alberta. Retrieved from https://era.library.ualberta.ca/files/pz50gx81b

Chicago Manual of Style (16th Edition):

Friesen, Hal. “Kirkpatrick-Baez Microscope for Hard X-Ray Imaging of Fast Ignition Experiments.” 2011. Masters Thesis, University of Alberta. Accessed December 05, 2020. https://era.library.ualberta.ca/files/pz50gx81b.

MLA Handbook (7th Edition):

Friesen, Hal. “Kirkpatrick-Baez Microscope for Hard X-Ray Imaging of Fast Ignition Experiments.” 2011. Web. 05 Dec 2020.

Vancouver:

Friesen H. Kirkpatrick-Baez Microscope for Hard X-Ray Imaging of Fast Ignition Experiments. [Internet] [Masters thesis]. University of Alberta; 2011. [cited 2020 Dec 05]. Available from: https://era.library.ualberta.ca/files/pz50gx81b.

Council of Science Editors:

Friesen H. Kirkpatrick-Baez Microscope for Hard X-Ray Imaging of Fast Ignition Experiments. [Masters Thesis]. University of Alberta; 2011. Available from: https://era.library.ualberta.ca/files/pz50gx81b


North Carolina State University

8. Robinson, William Richard. Spherical Microwave Confinement and Ball Lightning.

Degree: PhD, Physics, 2010, North Carolina State University

 This dissertation presents the results of research done on unconventional energy technologies from 1995 to 2009. The present civilization depends on an infrastructure that was… (more)

Subjects/Keywords: plasmas; fusion; Ball Lightning; Spherical Microwave Confinement

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APA (6th Edition):

Robinson, W. R. (2010). Spherical Microwave Confinement and Ball Lightning. (Doctoral Dissertation). North Carolina State University. Retrieved from http://www.lib.ncsu.edu/resolver/1840.16/6249

Chicago Manual of Style (16th Edition):

Robinson, William Richard. “Spherical Microwave Confinement and Ball Lightning.” 2010. Doctoral Dissertation, North Carolina State University. Accessed December 05, 2020. http://www.lib.ncsu.edu/resolver/1840.16/6249.

MLA Handbook (7th Edition):

Robinson, William Richard. “Spherical Microwave Confinement and Ball Lightning.” 2010. Web. 05 Dec 2020.

Vancouver:

Robinson WR. Spherical Microwave Confinement and Ball Lightning. [Internet] [Doctoral dissertation]. North Carolina State University; 2010. [cited 2020 Dec 05]. Available from: http://www.lib.ncsu.edu/resolver/1840.16/6249.

Council of Science Editors:

Robinson WR. Spherical Microwave Confinement and Ball Lightning. [Doctoral Dissertation]. North Carolina State University; 2010. Available from: http://www.lib.ncsu.edu/resolver/1840.16/6249


Louisiana State University

9. Gueorguiev, Vesselin Gueorguiev. Mixed-symmetry shell-model calculations in nuclear physics.

Degree: PhD, Physical Sciences and Mathematics, 2002, Louisiana State University

 Advances in computer technologies allow calculations in ever larger model spaces. To keep our understanding growing along with this growth in computational power, we consider… (more)

Subjects/Keywords: confinement; coherent (adiabatic) mixing; elliott su(3) model; spherical and cylindrical symmetry; spectrum; b(e2) transition strengths; quadrupole-quadrupole interaction; generalized eigenvalue problem; quasi-symmetry; harmonic oscillator in a box; cholesky; spin-orbit interaction; numerical methods; oblique; nuclear shell models; lanczos; nuclear structure; ground state energy; nuclear physics

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APA (6th Edition):

Gueorguiev, V. G. (2002). Mixed-symmetry shell-model calculations in nuclear physics. (Doctoral Dissertation). Louisiana State University. Retrieved from etd-1028102-183920 ; https://digitalcommons.lsu.edu/gradschool_dissertations/1990

Chicago Manual of Style (16th Edition):

Gueorguiev, Vesselin Gueorguiev. “Mixed-symmetry shell-model calculations in nuclear physics.” 2002. Doctoral Dissertation, Louisiana State University. Accessed December 05, 2020. etd-1028102-183920 ; https://digitalcommons.lsu.edu/gradschool_dissertations/1990.

MLA Handbook (7th Edition):

Gueorguiev, Vesselin Gueorguiev. “Mixed-symmetry shell-model calculations in nuclear physics.” 2002. Web. 05 Dec 2020.

Vancouver:

Gueorguiev VG. Mixed-symmetry shell-model calculations in nuclear physics. [Internet] [Doctoral dissertation]. Louisiana State University; 2002. [cited 2020 Dec 05]. Available from: etd-1028102-183920 ; https://digitalcommons.lsu.edu/gradschool_dissertations/1990.

Council of Science Editors:

Gueorguiev VG. Mixed-symmetry shell-model calculations in nuclear physics. [Doctoral Dissertation]. Louisiana State University; 2002. Available from: etd-1028102-183920 ; https://digitalcommons.lsu.edu/gradschool_dissertations/1990

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