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100%: González García, Álvaro: Polymer-Mediated Phase Stability of Colloids (Springer Theses) (ISBN: 9783030336851) 2020, Springer, Erstausgabe, in Deutsch, Taschenbuch.
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100%: Álvaro González García: Polymer-Mediated Phase Stability of Colloids (ISBN: 9783030336820) Springer Shop, in Englisch, Broschiert.
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100%: Álvaro González García: Polymer-Mediated Phase Stability of Colloids (ISBN: 9783030336837) Springer Shop, in Englisch, auch als eBook.
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Polymer-Mediated Phase Stability of Colloids (Springer Theses)
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Bester Preis: € 90,94 (vom 18.10.2020)1
Polymer-Mediated Phase Stability of Colloids
~EN HC NW
ISBN: 9783030336820 bzw. 3030336824, vermutlich in Englisch, Springer Shop, gebundenes Buch, neu.
Lieferung aus: Japan, Lagernd, zzgl. Versandkosten.
Colloid–polymer mixtures are subject of intensive research due to their wide range of applicability, for instance in coatings and food-stuffs. This thesis constitutes a fundamental investigation towards a better control over the stability of such suspensions. Through the chapters, different key parameters governing the stability of colloid–polymer mixtures are explored. How the colloid (pigment) shape and the effective polymer-colloid affinity modulate the stability of the suspension are examples of these key parameters. Despise the mostly theoretical results presented, the thesis is written in a format accessible to a broad scientific audience. Some of the equations of state presented might of direct use to experimentalists. Furthermore, new theoretical insights about colloid–polymer mixtures are put forward. These include four-phase coexistences in effective two-component, quantification of depletant partitioning at high colloidal concentrations, multiple re-entrant phase behaviour of the colloidal fluid–solid coexistence, and a condition where polymers are neither depleted nor adsorbed from/to the colloidal surface. Hard cover.
Colloid–polymer mixtures are subject of intensive research due to their wide range of applicability, for instance in coatings and food-stuffs. This thesis constitutes a fundamental investigation towards a better control over the stability of such suspensions. Through the chapters, different key parameters governing the stability of colloid–polymer mixtures are explored. How the colloid (pigment) shape and the effective polymer-colloid affinity modulate the stability of the suspension are examples of these key parameters. Despise the mostly theoretical results presented, the thesis is written in a format accessible to a broad scientific audience. Some of the equations of state presented might of direct use to experimentalists. Furthermore, new theoretical insights about colloid–polymer mixtures are put forward. These include four-phase coexistences in effective two-component, quantification of depletant partitioning at high colloidal concentrations, multiple re-entrant phase behaviour of the colloidal fluid–solid coexistence, and a condition where polymers are neither depleted nor adsorbed from/to the colloidal surface. Hard cover.
2
Polymer-Mediated Phase Stability of Colloids
~EN NW EB DL
ISBN: 9783030336837 bzw. 3030336832, vermutlich in Englisch, Springer Shop, neu, E-Book, elektronischer Download.
Lieferung aus: Italien, Lagernd, zzgl. Versandkosten.
Colloid–polymer mixtures are subject of intensive research due to their wide range of applicability, for instance in coatings and food-stuffs. This thesis constitutes a fundamental investigation towards a better control over the stability of such suspensions. Through the chapters, different key parameters governing the stability of colloid–polymer mixtures are explored. How the colloid (pigment) shape and the effective polymer-colloid affinity modulate the stability of the suspension are examples of these key parameters. Despise the mostly theoretical results presented, the thesis is written in a format accessible to a broad scientific audience. Some of the equations of state presented might of direct use to experimentalists. Furthermore, new theoretical insights about colloid–polymer mixtures are put forward. These include four-phase coexistences in effective two-component, quantification of depletant partitioning at high colloidal concentrations, multiple re-entrant phase behaviour of the colloidal fluid–solid coexistence, and a condition where polymers are neither depleted nor adsorbed from/to the colloidal surface. eBook.
Colloid–polymer mixtures are subject of intensive research due to their wide range of applicability, for instance in coatings and food-stuffs. This thesis constitutes a fundamental investigation towards a better control over the stability of such suspensions. Through the chapters, different key parameters governing the stability of colloid–polymer mixtures are explored. How the colloid (pigment) shape and the effective polymer-colloid affinity modulate the stability of the suspension are examples of these key parameters. Despise the mostly theoretical results presented, the thesis is written in a format accessible to a broad scientific audience. Some of the equations of state presented might of direct use to experimentalists. Furthermore, new theoretical insights about colloid–polymer mixtures are put forward. These include four-phase coexistences in effective two-component, quantification of depletant partitioning at high colloidal concentrations, multiple re-entrant phase behaviour of the colloidal fluid–solid coexistence, and a condition where polymers are neither depleted nor adsorbed from/to the colloidal surface. eBook.
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Polymer-Mediated Phase Stability of Colloids (Springer Theses) (2020)
DE PB NW FE
ISBN: 9783030336851 bzw. 3030336859, in Deutsch, 173 Seiten, Springer, Taschenbuch, neu, Erstausgabe.
Lieferung aus: Deutschland, Dieser Artikel ist noch nicht erschienen. Jetzt vorbestellen vor und wir liefern Ihnen den Artikel sobald er verfügbar ist. Lieferung von Amazon, Versandkostenfrei.
Von Händler/Antiquariat, Amazon.de.
Springer, Taschenbuch, Ausgabe: 1st ed. 2019, Publiziert: 2020-11-21T00:00:01Z, Produktgruppe: Book.
Von Händler/Antiquariat, Amazon.de.
Springer, Taschenbuch, Ausgabe: 1st ed. 2019, Publiziert: 2020-11-21T00:00:01Z, Produktgruppe: Book.
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