Search Results - "printing"

  1. 801

    Chinese Circulations : Capital, Commodities, and Networks in Southeast Asia by Wen-chin Chang

    Published 2011
    Table of Contents: “…Trocki -- The lidai baoan and the Ryukyu maritime tributary trade network with China and Southeast Asia, the fourteenth to seventeenth centuries / Takeshi Hamashita -- Cochinchinese coin casting and circulating in eighteenth-century Southeast Asia / Li Tana -- Import of prosperity : luxurious items imported from China to Siam during the Thonburi and early Rattanakosin periods (1767-1854) / Masuda Erika -- A Sino-Indonesian commodity chain : the trade in tortoiseshell in the late seventeenth and eighteenth centuries / Heather Sutherland -- From Baoshi to Feicui : Qing-Burmese gem trade, c. 1644-1800 / Sun Laichen -- Junks to java : Chinese shipping to the Nanyang in the second half of the eighteenth century / Leonard Bluss -- Chinese books and printing in the early Spanish Philippines / Lucille Chia -- The end of the "age of commerce"? …”
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  2. 802

    Multifunctional ultrawideband antennas : trends, techniques and applications / by Saha, Chinmoy, Siddiqui, Jawad Y., Antar, Yahia

    Published 2019
    Table of Contents: “…2.3.2.4 Phase Response and Group Delay2.3.2.5 Fidelity; 2.3.3 Experimental Setup for Time-Domain Characterization; 2.4 Wideband and UWB Antenna: A Brief Review; 2.4.1 Frequency-Independent Antennas; 2.4.1.1 Equiangular Antenna; 2.4.1.2 Log-Periodic Antenna; 2.4.1.3 Biconical Antenna; 2.4.1.4 Discone Antenna; 2.4.1.5 Bow Tie Antenna; 2.4.2 UWB Printed Monopole Antenna; 2.4.2.1 Vertical Disc Monopole; 2.4.2.2 Printed Slotted Monopole; 2.4.3 UWB Tapered Slot Antenna; 2.4.3.1 Feeding Mechanism of Tapered Slot Antennas; 2.4.4 UWB Fractal Antenna; 2.4.5 UWB Dielectric Resonator Antennas…”
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  3. 803

    Surface engineering and technology for biomedical implants / by Oshida, Yoshiki

    Published 2014
    Table of Contents: “…New materials, new structures, and new technologies -- 7.1 Introduction -- 7.2 New materials -- 7.2.1 Bone materials -- 7.2.2 Porous materials -- 7.2.3 Nanomaterials -- 7.2.4 Functionally gradient materials -- 7.3 New structures -- 7.3.1 Nanostructures -- 7.3.2 Biomimetic functionalization -- 7.4 New technologies -- 7.4.1 Tissue engineering -- 7.4.2 Three-dimensional printing -- 7.4.3 Laser technologies -- 7.4.4 Electrospinning -- 7.4.5 Atmospheric plasma treatment -- 7.4.6 Friction stir welding -- 7.4.7 Near-net shape (NNS) forming -- 7.4.8 Miscellaneous --…”
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  4. 804

    Sustainable production automation / by Li, Jingshan, Dr, Lennartson, Bengt, 1956-, Tang, Ying (Gina), Biller, Stephan, Matta, Andrea

    Published 2017
    Table of Contents: “…The future of work: sustainable manufacturing -- 1.1 Introduction -- 1.2 Sustainability performance measurement -- 1.3 Selected examples of sustainable manufacturing -- 1.4 3D printing for sustainable manufacturing -- 1.5 Sustainable manufacturing in the age of big data -- 1.6 Conclusion -- References --…”
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  5. 805

    E-learning and the science of instruction proven guidelines for consumers and designers of multimedia learning / by Clark, Ruth Colvin

    Published 2011
    Table of Contents: “…Applying the Contiguity Principle: Align Words to Corresponding Graphics.Contiguity Principle 1: Place Printed Words Near Corresponding Graphics.Contiguity Principle 2: Synchronize Spoken Words with Corresponding Graphics.Psychological Reasons for the Contiguity Principle.Evidence for Presenting Printed Words Near Corresponding Graphics.Evidence for Presenting Spoken Words at the Same Time as Corresponding Graphics.What We Don't Know About Contiguity.6. …”
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  6. 806

    Making work visible ethnographically grounded case studies of work practice /

    Published 2011
    Table of Contents: “…Seeing the right colour: technical and practical solutions to the problem of accurate colour reproduction in the digital print industry Tommaso Colombino, David Martin, Jacki O'Neill, Mary Ann Sprague, Jennifer Watts-Perotti, Jutta Willamowski, Frederic Roulland, and Antonietta Grasso; Part IV. …”
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  7. 807

    The Bront�es in context

    Published 2012
    Table of Contents: “…The Bront�es' way into print / Linda H. Peterson; 19. Reading the Bront�es: their first audiences / Stephen Colclough; Part II. …”
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  8. 808

    Microarray analysis : biochips and eradication of all diseases / by Sharma, Kal Renganathan

    Published 2015
    Table of Contents: “…Biochip manufacturing -- Chapter objectives -- Three approaches -- Ex situ manufacturing -- Commercial instruments -- Time to print -- Summary --…”
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  9. 809

    Introduction to Python for science and engineering / by Pine, David J.

    Published 2019
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  10. 810

    Cancer disparities causes and evidence-based solutions /

    Published 2012
    Table of Contents: “…Kathleen Adams and Li-Nien Chien -- Messengers for health : a community-based participatory research intervention in a native American community / Vanessa Watts Simonds -- Tools for improving colorectal cancer screening rates : multimedia vs. print in an underserved community / Gregory Makoul, David Baker and Denise Scholtens --…”
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  11. 811

    Sherlock Holmes in Babylon and other tales of mathematical history /

    Published 2004
    Table of Contents: “…Nordgaard -- Reading Bombelli's x-purgated algebra / Abraham Arcavi and Maxim Bruckheimer -- The first work on mathematics printed in the New World / David Eugene Smith -- The seventeenth century. …”
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  12. 812

    Critical and rare earth elements : recovery from secondary resources /

    Published 2020
    Table of Contents: “…Environmentally and economically sustainable recovery of precious metals and rare earth elements from waste printed circuit boards R. Khannaa,*, P.S. Mukherjeeb, R. …”
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  13. 813

    The Routledge companion to disability and media /

    Published 2020
    Table of Contents: “…: Analyzing online content to interrogate dis/ability and design / Jerry Robinson -- Interdependence in collaboration with robots / Eleanor Sandry -- Dropping the disability beat : why specialized reporting doesn't solve disability (mis)representation / Chelsea Temple Jones -- Advertising disability and the diversity directive / Josh Loebner -- Disability advocacy in BBC's Ouch and ABC's Ramp up / Shawn Burns -- Representing difference : disability, digital storytelling, and public pedagogy / Carla Rice and Eliza Chandler -- Needs must : digital innovations in disability rights advocacy / Filippo Trevisan -- Disability media work / Katie Ellis and Melissa Merchant -- Books and people with print disabilities : public value and the international disability human rights agenda / David Adair and Paul Harpur.…”
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  14. 814

    E-learning and the science of instruction : proven guidelines for consumers and designers of multimedia learning / by Clark, Ruth Colvin, Mayer, Richard E., 1947-

    Published 2016
    Table of Contents: “…Applying the Contiguity Principle: Align Words to Corrresponding Graphics Chapter Summary Principle 1: Place Printed Words Near Corresponding Graphics Psychological Reasons for Principle 1 Evidence for Principle 1 Principle 2: Synchronize Spoken Words with Corresponding Graphics Psychological Reasons for Principle 2 Evidence for Principle 2 What to Look for in e-Learning 6. …”
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  15. 815

    Brazil in the World, the World in Brazil. Brasil no mundo, o mundo no Brasil : Research Trends and Library Resources /

    Published 2017
    Table of Contents: “…Schadl -- Borderlands and AfroBrasil: exhibiting third space intersections of Portuguese language, literature, print, image, and performance / Suzanne M. Schadl with Viviane F. …”
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  16. 816

    Polypharmacology in drug discovery

    Published 2012
    Table of Contents: “…Lagrutta 5.1 Introduction. 5.2 Screening methods. 5.3 Structural insights into the interaction between drugs and CV ion channels. 5.4 Medicinal Chemistry approaches. 5.5 Conclusion. 6 Prediction of side effects based on fingerprint profiling and data mining Jacques Migeon 6.1 Introduction to BioPrint. 6.2 The pharmacological fingerprint. 6.3 Antidepressant example. 6.4 Profile similarity at non-therapeutic targets. 6.5 Interpreting the polypharmacology profile. 6.6 Methods. 6.7 Patterns of activity. 6.8 Integrating function profile data with traditional pharmacological binding data. 6.9 Analysis of the antifungal tioconazole. 6.10 Conclusions. …”
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  17. 817

    Design and fabrication of self-powered micro-harvesters : rotating and vibrated micro-power systems / by Pan, C. T., Hwang, Y. M., Lin, Liwei, Chen, Yingzhong

    Published 2014
    Table of Contents: “…Machine generated contents note: About the Authors xi Preface xiii Acknowledgments xv 1 Introduction 1 1.1 Background 1 1.2 Energy Harvesters 2 1.2.1 Piezoelectric ZnO Energy Harvester 3 1.2.2 Vibrational Electromagnetic Generators 3 1.2.3 Rotary Electromagnetic Generators 4 1.2.4 NFES Piezoelectric PVDF Energy Harvester 4 1.3 Overview 5 2 Design and Fabrication of Flexible Piezoelectric Generators Based on ZnO Thin Films 7 2.1 Introduction 7 2.2 Characterization and Theoretical Analysis of Flexible ZnO-Based Piezoelectric Harvesters 10 2.2.1 Vibration Energy Conversion Model of Film-Based Flexible Piezoelectric Energy Harvester 10 2.2.2 Piezoelectricity and Polarity Test of Piezoelectric ZnO Thin Film 12 2.2.3 Optimal Thickness of PET Substrate 15 2.2.4 Model Solution of Cantilever Plate Equation 15 2.2.5 Vibration-Induced Electric Potential and Electric Power 18 2.2.6 Static Analysis to Calculate the Optimal Thickness of the PET Substrate 19 2.2.7 Model Analysis and Harmonic Analysis 21 2.2.8 Results of Model Analysis and Harmonic Analysis 23 2.3 The Fabrication of Flexible Piezoelectric ZnO Harvesters on PET Substrates 27 2.3.1 Bonding Process to Fabricate UV-Curable Resin Lump Structures on PET Substrates 27 2.3.2 Near-Field Electro-Spinning with Stereolithography Technique to Directly Write 3D UV-Curable Resin Patterns on PET Substrates 29 2.3.3 Sputtering of Al and ITO Conductive Thin Films on PET Substrates 29 2.3.4 Deposition of Piezoelectric ZnO Thin Films by Using RF Magnetron Sputtering 31 2.3.5 Testing a Single Energy Harvester under Resonant and Non-Resonant Conditions 34 2.3.6 Application of ZnO/PET-Based Generator to Flash Signal LED Module 39 2.3.7 Design and Performance of a Broad Bandwidth Energy Harvesting System 40 2.4 Fabrication and Performance of Flexible ZnO/SUS304-Based Piezoelectric Generators 48 2.4.1 Deposition of Piezoelectric ZnO Thin Films on Stainless Steel Substrates 48 2.4.2 Single-Sided ZnO/SUS304-Based Flexible Piezoelectric Generator 50 2.4.3 Double-Sided ZnO/SUS304-Based Flexible Piezoelectric Generator 51 2.4.4 Characterization of ZnO/SUS304-Based Flexible Piezoelectric Generators 52 2.4.5 Structural and Morphological Properties of Piezoelectric ZnO Thin Films on Stainless Steel Substrates 54 2.4.6 Analysis of Adhesion of ZnO Thin Films on Stainless Steel Substrates 56 2.4.7 Electrical Properties of Single-Sided ZnO/SUS304-Based Flexible Piezoelectric Generator 59 2.4.8 Characterization of Double-Sided ZnO/SUS304-Based Flexible Piezoelectric Generator: Analysis and Modification of Back Surface of SUS304 61 2.4.9 Electrical Properties of Double-Sided ZnO/SUS304-Based Piezoelectric Generator 63 2.5 Summary 66 References 67 3 Design and Fabrication of Vibration-Induced Electromagnetic Microgenerators 71 3.1 Introduction 71 3.2 Comparisons between MCTG and SMTG 74 3.2.1 Magnetic Core-Type Generator (MCTG) 74 3.2.2 Sided Magnet-Type Generator (SMTG) 76 3.3 Analysis of Electromagnetic Vibration-Induced Microgenerators 76 3.3.1 Design of Electromagnetic Vibration-Induced Microgenerators 77 3.3.2 Analysis Mode of the Microvibration Structure 78 3.3.3 Analysis Mode of Magnetic Field 81 3.3.4 Evaluation of Various Parameters of Power Output 84 3.4 Analytical Results and Discussion 88 3.4.1 Analysis of Bending Stress within the Supporting Beam of the Spiral Microspring 90 3.4.2 Finite Element Models for Magnetic Density Distribution 93 3.4.3 Power Output Evaluation 97 3.5 Fabrication of Microcoil for Microgenerator 103 3.5.1 Microspring and Induction Coil 103 3.5.2 Microspring and Magnet 105 3.6 Tests and Experiments 106 3.6.1 Measurement System 106 3.6.2 Measurement Results and Discussion 107 3.6.3 Comparison between Measured Results and Analytical Values 110 3.7 Conclusions 112 3.7.1 Analysis of Microgenerators and Vibration Mode and Simulation of the Magnetic Field 112 3.7.2 Fabrication of LTCC Microsensor 112 3.7.3 Measurement and Analysis Results 113 3.8 Summary 113 References 114 4 Design and Fabrication of Rotary Electromagnetic Microgenerator 117 4.1 Introduction 117 4.1.1 Piezoelectric, Thermoelectric, and Electrostatic Generators 119 4.1.2 Vibrational Electromagnetic Generators 119 4.1.3 Rotary Electromagnetic Generators 120 4.1.4 Generator Processes 121 4.1.5 Lithographie Galvanoformung Abformung Process 122 4.1.6 Winding Processes 123 4.1.7 LTCC 123 4.1.8 Printed Circuit Board Processes 124 4.1.9 Finite-Element Simulation and Analytical Solutions 126 4.2 Case 1: Winding Generator 126 4.2.1 Design 127 4.2.2 Analytical Formulation 132 4.2.3 Simulation 134 4.2.4 Fabrication Process 138 4.2.5 Results and Discussion (1) 139 4.2.6 Results and Discussion (2) 142 4.3 Case 2: LTCC Generator 146 4.3.1 Simulation 147 4.3.2 Analytical Theorem of Microgenerator Electromagnetism 148 4.3.3 Simplification 152 4.3.4 Analysis of Vector Magnetic Potential 153 4.3.5 Analytical Solutions for Power Generation 154 4.4 Fabrication 157 4.4.1 LTCC Process 157 4.4.2 Magnet Process 159 4.4.3 Measurement Set-up 160 4.5 Results and Discussion 162 4.5.1 Design 162 4.5.2 Analytical Solutions 168 4.5.3 Fabrication 170 References 178 5 Design and Fabrication of Electrospun PVDF Piezo-Energy Harvesters 183 5.1 Introduction 183 5.2 Fundamentals of Electrospinning Technology 187 5.2.1 Introduction to Electrospinning 187 5.2.2 Alignment and Assembly of Nanofibers 190 5.3 Near-Field Electrospinning 191 5.3.1 Introduction and Background 191 5.3.2 Principles of Operation 194 5.3.3 Process and Experiment 196 5.3.4 Summary 202 5.4 Continuous NFES 202 5.4.1 Introduction and Background 202 5.4.2 Principles of Operation 202 5.4.3 Controllability and Continuity 205 5.4.4 Process Characterization 208 5.4.5 Summary 211 5.5 Direct-Write Piezoelectric Nanogenerator 211 5.5.1 Introduction and Background 211 5.5.2 Polyvinylidene Fluoride 212 5.5.3 Theoretical Studies for Realization of Electrospun PVDF Nanofibers 213 5.5.4 Electrospinning of PVDF Nanofibers 216 5.5.5 Detailed Discussion of Process Parameters 219 5.5.6 Experimental Realization of PVDF Nanogenerator 223 5.5.7 Summary 241 5.6 Materials, Structure, and Operation of Nanogenerator with Future Prospects 241 5.6.1 Material and Structural Characteristics 241 5.6.2 Operation of Nanogenerator 243 5.6.3 Summary and Future Prospects 248 5.7 Case Study: Large-Array Electrospun PVDF Nanogenerators on a Flexible Substrate 248 5.7.1 Introduction and Background 248 5.7.2 Working Principle 249 5.7.3 Device Fabrication 249 5.7.4 Experimental Results 251 5.7.5 Summary 252 5.8 Conclusion 253 5.8.1 Near-Field Electrospinning 253 5.8.2 Continuous Near-Field Electrospinning 254 5.8.3 Direct-Write Piezoelectric PVDF 254 5.9 Future Directions 255 5.9.1 NFES Integrated Nanofiber Sensors 255 5.9.2 NFES One-Dimensional Sub-Wavelength Waveguide 256 5.9.3 NFES Biological Applications 257 5.9.4 Direct-Write Piezoelectric PVDF Nanogenerators 258 References 258 Index 265.…”
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  18. 818

    PIC16F1847 microcontroller-based programmable logic controller : advanced concepts / by Uzam, Murat, 1968-

    Published 2021
    Table of Contents: “…Some example universal double sided prototyping printed circuit boards (PCBs) that can be used for the modules developed in this book <BR> Table A.2. …”
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  19. 819

    PIC16F1847 microcontroller-based programmable logic controller : hardware and basic concepts / by Uzam, Murat, 1968-

    Published 2021
    Table of Contents: “…Some example universal double sided prototyping printed circuit boards (PCBs) that can be used for the modules developed in this book <BR> Table A.2. …”
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  20. 820

    Mrs. Parkington / by Bromfield, Louis, 1896-1956

    Published 1992
    Book