Sulagna chatterjee (8 Ergebnisse)

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  • Sprache: Englisch

    Verlag: LAP LAMBERT Academic Publishing, 2026

    6209522394 / 9786209522390

    • Softcover

    Anbieter: California Books, Miami, FL, USACalifornia Books

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  • Sprache: Englisch

    Verlag: LAP LAMBERT Academic Publishing, 2026

    6209522394 / 9786209522390

    • Softcover

    Anbieter: PBShop.store US, Wood Dale, IL, USAPBShop.store US

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    Zustand: Neu

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    PAP. Zustand: New. New Book. Shipped from UK. Established seller since 2000.

  • Sprache: Englisch

    Verlag: LAP LAMBERT Academic Publishing, 2026

    6209522394 / 9786209522390

    • Softcover

    Anbieter: PBShop.store UK, Fairford, GLOS, Vereinigtes KönigreichPBShop.store UK

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    Zustand: Neu

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    PAP. Zustand: New. New Book. Shipped from UK. Established seller since 2000.

  • Sprache: Englisch

    Verlag: LAP LAMBERT Academic Publishing, 2026

    6209522394 / 9786209522390

    • Softcover

    Anbieter: preigu, Osnabrück, Deutschlandpreigu

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    Zustand: Neu

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    Taschenbuch. Zustand: Neu. Nanoscale Strain-engineering in Solid State Semiconductor Devices | From Fundamentals to Applications | Sulagna Chatterjee | Taschenbuch | Englisch | 2026 | LAP LAMBERT Academic Publishing | EAN 9786209522390 | Verantwortliche Person für die EU: SIA OmniScriptum Publishing, Brivibas Gatve 197, 1039 RIGA, LETTLAND, customerservice[at]vdm-vsg[dot]de | Anbieter: preigu.…

  • Sprache: Englisch

    Verlag: LAP LAMBERT Academic Publishing Feb 2026, 2026

    6209522394 / 9786209522390

    • Softcover
    • Print-on-Demand

    Anbieter: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, DeutschlandBuchWeltWeit Ludwig Meier e.K.

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    Taschenbuch. Zustand: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware 136 pp. Englisch.

  • Sprache: Englisch

    Verlag: LAP LAMBERT Academic Publishing, 2026

    6209522394 / 9786209522390

    • Softcover
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    Anbieter: AHA-BUCH GmbH, Einbeck, DeutschlandAHA-BUCH GmbH

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    Zustand: Neu

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    Taschenbuch. Zustand: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - An analytical model has been developed that estimates induced stress in horizontally embedded nanowires. Stress has been considered to be induced due to mismatch of both lattice and thermo-elastic constants. The contribution of both process- and substrate-induced stress has been accounted for. Various materials have been chosen as substrate for different nanowire materials, depending on their crystal structures. The magnitude and nature of induced stress has been engineered by varying the fractional insertion of the nanowire into the substrate. Nanowires being extremely petite structures always need to be mounted on some substrate. Hence, a commercial substrate has been proposed, such that mobility enhancement through stress-engineering might be accomplished by varying the fractional insertion. Step-by-step stress-engineering for partially embedded nanowire FETs has been performed. The choice of high-k gate dielectric has been shown to play an important role. Similar stress-engineering has been performed for UTB MOSFETs and FinFETs. Both such FETs have been proposed to be fabricated on ingenious, commercial IOS substrates, capable of inducing stress of desired nature and magnitude. …

  • Sprache: Englisch

    Verlag: LAP Lambert Academic Publishing, 2026

    6209522394 / 9786209522390

    • Softcover
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    Paperback. Zustand: new. Paperback. An analytical model has been developed that estimates induced stress in horizontally embedded nanowires. Stress has been considered to be induced due to mismatch of both lattice and thermo-elastic constants. The contribution of both process- and substrate-induced stress has been accounted for. Various materials have been chosen as substrate for different nanowire materials, depending on their crystal structures. The magnitude and nature of induced stress has been engineered by varying the fractional insertion of the nanowire into the substrate. Nanowires being extremely petite structures always need to be mounted on some substrate. Hence, a commercial substrate has been proposed, such that mobility enhancement through stress-engineering might be accomplished by varying the fractional insertion. Step-by-step stress-engineering for partially embedded nanowire FETs has been performed. The choice of high-k gate dielectric has been shown to play an important role. Similar stress-engineering has been performed for UTB MOSFETs and FinFETs. Both such FETs have been proposed to be fabricated on ingenious, commercial IOS substrates, capable of inducing stress of desired nature and magnitude. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.…

  • Sprache: Englisch

    Verlag: LAP LAMBERT Academic Publishing Feb 2026, 2026

    6209522394 / 9786209522390

    • Softcover
    • Print-on-Demand

    Anbieter: buchversandmimpf2000, Emtmannsberg, BAYE, Deutschlandbuchversandmimpf2000

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    Zustand: Neu

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    Taschenbuch. Zustand: Neu. This item is printed on demand - Print on Demand Titel. Neuware -An analytical model has been developed that estimates induced stress in horizontally embedded nanowires. Stress has been considered to be induced due to mismatch of both lattice and thermo-elastic constants. The contribution of both process- and substrate-induced stress has been accounted for. Various materials have been chosen as substrate for different nanowire materials, depending on their crystal structures. The magnitude and nature of induced stress has been engineered by varying the fractional insertion of the nanowire into the substrate. Nanowires being extremely petite structures always need to be mounted on some substrate. Hence, a commercial substrate has been proposed, such that mobility enhancement through stress-engineering might be accomplished by varying the fractional insertion. Step-by-step stress-engineering for partially embedded nanowire FETs has been performed. The choice of high-k gate dielectric has been shown to play an important role. Similar stress-engineering has been performed for UTB MOSFETs and FinFETs. Both such FETs have been proposed to be fabricated on ingenious, commercial IOS substrates, capable of inducing stress of desired nature and magnitude.VDM Verlag, Dudweiler Landstraße 99, 66123 Saarbrücken 136 pp. Englisch. …