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  1. 81

    Geochemistry by White, William M., 1948-

    Published 2013
    An electronic book accessible through the World Wide Web; click to view
    Electronic eBook
  2. 82

    Treatise on geochemistry /

    Published 2014
    Table of Contents: “…Planets, asteroids, comets and the solar system / volume editor, Andrew M. Davis -- volume 3. …”
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    Electronic eBook
  3. 83

    Antarctica the most interactive ice-air-ocean environment /

    Published 2011
    Table of Contents: “…/ Nitosh Kumar Brahma -- Navigation with global positioning system in Antarctic Circle / Rajesh Tiwari, Smita Tiwari, P.K. …”
    An electronic book accessible through the World Wide Web; click to view
    Electronic eBook
  4. 84

    Nano-Micro Letters

    Open Access
    Electronic Journal
  5. 85

    International Journal of Energy and Environmental Engineering

    Open Access
    Electronic Journal
  6. 86

    Evolution a Scientific American reader.

    Published 2006
    Table of Contents: “…Scott and Tony Pawson -- Life, death and the immune system / Gustav J.V. Nossal -- Cybernetic cells / W. …”
    An electronic book accessible through the World Wide Web; click to view
    Electronic eBook
  7. 87

    Molten salts chemistry from lab to applications /

    Published 2013
    Table of Contents: “…Modelling of molten salts -- Raman spectroscopy and pulsed neutron diffraction of molten salt mixtures containing rare earth trichlorides : trial approaches from fundamentals to pyrochemical reprocessing -- In situ spectroscopy in molten fluoride salts -- Thermodynamic calculations of molten salt reactor fuel systems -- Ionic transport in molten salts -- Salt bath thermal treating and nitriding -- Catalysis in molten ionic media -- The ability of molten carbonate for the gas cleaning of biomass gasification -- Inert anode development for high-temperature molten salts -- Boron-doped diamond electrode in molten chloride systems -- NF3 production from electrolysis in molten fluorides -- Corrosion in molten salts -- Plasma-induced discharge electrolysis for nanoparticles production -- Electrochemical formation of rare earth-nickel alloys -- Electrochemical synthesis of novel niobium and tantalum compounds in molten salts -- Preparation of carbonaceous materials in fused carbonates salts : applications to electrochemical storages devices -- Molten carbonates from fuel cells to new energy devices -- Synthesis and Li+ ion-exchange in molten salts of novel hollandite-type Ky(Mn1- xCox)O2zH2O nano-fiber for lithium battery electrodes -- Hybrid molten carbonate/solid oxide direct carbon fuel cells -- High temperature molten salts for solar power application -- The sodium metal halide (ZEBRA) battery : an example of inorganic molten salt electrolyte battery -- Hydrogen storage and transportation system through lithium hydride by using molten salt technology -- Nuclear energy based on thorium molten salt -- Molten salts for nuclear applications -- Lanthanides extraction processes in molten fluoride media -- Development of pyrochemical separation processes for recovery of actinides from spent nuclear fuel in molten LiCl-KCl.…”
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  8. 88

    Culture Clash : Law and Science in America / by Goldberg, Steven, 1947-2010

    Published 2012
    Full text available:
    Electronic eBook
  9. 89
  10. 90

    Energy and environment engineering and management : selected, peer reviewed papers from the 3rd International Congress of Energy and Environment Engineering and Management, Portale...

    Published 2010
    Table of Contents: “…Activated carbons prepared from natural and synthetic raw materials with potential applications in gas separations -- Sustainable manufacturing in aerospace industry : analysis of the viability of intermediate stages elimination in sheet processing -- Low environmental impact machining processes of composite materials applied to the aerospace sector -- Sand mining pool eutrophication (Vale do Paraiba, São Paulo, Brazil) : preliminary assessment -- Recovery of degraded areas in Vale do Paraiba, São Paulo, Brazil : performance indicators -- Surface wave energy capture system (a new proposition) -- Environmental education and energetic efficiency : reports on Brazilian projects in the sake of socio-environmental sustainability -- Free cooling with phase change materials (PCM) -- Interface potential modeling in a finite crystal -- Hydrothermal stability of ordered mesoporous titanosilicate materials prepared at room temperature -- Composites in the design optimization of biconvex refractive solar concentrators, study and calculation prototypes -- SOM-SEM-EDS identification of tool wear mechanisms in the dry-machining of aerospace titanium alloys -- Ecological design, an objective in the projects engineering area -- Use of centrifugal pumps operating as turbines for energy recovery in water distribution networks. …”
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    Electronic Conference Proceeding eBook
  11. 91

    Atmospheric pressure plasma for surface modification by Wolf, Rory A.

    Published 2013
    Table of Contents: “…Plasmas for Surface Modification 27 2.1 Low-Pressure Plasmas 28 2.2 Microwave Systems 31 2.3 Physical Vapor Deposition Systems 33 2.4 Atmospheric Plasma Systems 42 2.5 Atmospheric Plasma Precursor Deposition Systems 51 3. …”
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    Electronic eBook
  12. 92

    Climate change / by Wong, Kaufui Vincent

    Published 2016
    Table of Contents: “…Atmospheric carbon dioxide removal via technology -- 11.1 Introduction -- 11.2 Carbon dioxide removal -- 11.3 Biochar -- 11.4 Artificial trees -- 11.5 Enhanced weathering -- 11.6 Bio-energy with carbon capture and storage -- 11.7 Carbon dioxide capture "trapping" procedures -- 11.8 Carbon dioxide sequestration procedures -- 11.9 Media for biological systems -- 11.10 Production of biofuel -- 11.11 Discussion and conclusion -- References --…”
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    Electronic eBook
  13. 93

    Guide to state-of-the-art electron devices

    Published 2013
    Table of Contents: “…Machine generated contents note: Foreword Preface Contributors and Acknowledgements Historic Timeline Part I - Basic Electron Devices 1 Bipolar Transistors 1.1 Motivation 1.2 The pn Junction and Its Electronic Applications 1.3 The Bipolar Junction Transistor and Its Electronic Applications 1.4 Optimization of Bipolar Transistors 1.5 SiGe Heterojunction Bipolar Transistors References 2 MOS Devices 2.1 Introduction 2.2 MOSFET Basics 2.3 The Evolution of MOSFET 2.4 Concluding Remarks References 3 Memory Devices 3.1 Introduction 3.2 Volatile Memories 3.3 Non-Volatile Memories 3.4 Future Perspectives of MOS Memories 3.5 Closing Remarks References 4 Passive Components 4.1 Discrete and integrated passive components 4.2 Application in Analog ICs and DRAM 4.3 The planar Spiral Inductor - A Case Study 4.4 Parasitics in Integrated Circuits References 5 Emerging Research Devices 5.1 Non-Charge Based Switching 5.2 Carbon as a Replacement for Silicon and the Rise of Moletronics 5.3 Conclusions References Part II - Aspects of Device and IC Manufacturing 6 Electronics Materials 6.1 Introduction 6.2 Silicon Device Technology 6.3 Compound Semiconductor Devices 6.4 Electronic Displays 6.5 Conclusions References 7 Compact Modeling 7.1 The Role of Compact Models 7.2 Bipolar Transistor Compact Modeling 7.3 MOS Transistor Compact Modeling 7.4 Compact Modeling of Passive Components 7.5 Benchmarking and Implementation References 8 Technology Computer Aided Design 8.1 Introduction 8.2 Drift-Diffusion Model 8.3 Microscopic Transport Models 8.4 Quantum Transport Models 8.5 Process and Equipment Simulation References 9 Device Reliability Physics 9.1 Introduction and Background 9.2 Device Reliability Issues 9.3 Interconnect Degradation Mechanisms 9.4 Circuit-Level Reliability Issues 9.5 Microscopic Approaches to Assuring Reliability of ICs References 10 Semiconductor Manufacturing 10.1 Introduction 10.2 Substrates 10.3 Lithography and Etching 10.4 Front-End Processing 10.5 Back-End Processing 10.6 Process Control 10.7 Assembly and Test 10.8 Future Directions References Part III - Applications based on Electron Devices 11 VLSI Logic Technology and Circuits 11.1 Introduction 11.2 MOSFET Scaling Trends 11.3 Low-Power and High-Speed Logic Design 11.4 Scaling-Driven technology Enhancements 11.5 Ultra-Low Voltage Transistors 11.6 Interconnects 11.7 Memory Design 11.8 System Integration References 12 VLSI Mixed-Signal Technology And Circuits 12.1 Introduction 12.2 Analog/Mixed-Signal Technologies in Scaled CMOS 12.3 Data Converter ICs 12.4 Mixed-Signal Circuits in Low-Power Display Applications 12.5 Image Sensor Technology and Circuits References 13 Memory Technologies 13.1 Semiconductor Memory History 13.2 State of Mainstream Semiconductor Memory Today 13.3 Emerging Memory Technologies 13.4 Conclusions References 14 RF&Microwave Semiconductor Technologies 14.1 III-V Based: GaAs and InP 14.2 Si and SiGe 14.3 Wide Bandgap Devices (Group III-Nitrides, SiC and Diamond) References 15 Power Devices and ICs 15.1 Overview of Power Devices & ICs 15.2 Two-Carrier and High-Power Devices 15.3 Power MOSFET Devices 15.4 High-Voltage and Power ICs 15.5 Wide Bandgap Power Devices References 16 Photovoltaic Device Applications 16.1 Introduction 16.2 Silicon Photovoltaics 16.3 Polycrystalline Thin-Film Photovoltaics 16.4 III-V Compound Photovoltaics 16.5 Future Concepts in Photovoltaics References 17 Large Area Electronics 17.1 Thin-Film Solar Cells 17.2 Large-Area Imaging 17.3 Flat-Panel Displays References 18 Microelectromechanical Systems (MEMS) 18.1 Introduction 18.2 The 1960's - First Micromachined Structures Envisioned 18.3 The 1970's - Integrated Sensors Started 18.4 The 1980's - Surface Micromachining Emerged 18.5 The 1990's - MEMS Impacted Various Fields 18.6 The 2000's - Diversified Sophisticated Systems Enabled By MEMS 18.7 Future Outlook References 19 Vacuum Device Applications 19.1 Traveling-Wave Devices 19.2 Klystrons 19.3 Inductive Output Tubes 19.4 Crossed-Field Devices 19.5 Gyro-Devices References 20 Optoelectronic Device Applications 20.1 Introduction 20.2 Light Emission in Semiconductors 20.3 Photodetectors 20.4 Integrated Optoelectronics 20.5 Optical Interconnects 20.6 Concluding Remarks References 21 Devices for the Post Silicon CMOS Era 21.1 Introduction 21.2 Devices for the 8-nm Node With Conventional Materials 21.3 New Channel Materials and Devices 21.4 Concluding Remarks References Index.…”
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  14. 94