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  1. 4581
  2. 4582
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  4. 4584

    PLASTICS MATERIALS by Brydson, J. A.

    Published 2000
    Table of Contents: “…Relation of Structure to Thermal and Mechanical Properties -- 5. Relation of Structure to Chemical Properties -- 6. …”
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  5. 4585
  6. 4586

    Polymer Engineering Science and Viscoelasticity An Introduction by Brinson, Hal F., L. Catherine Brinson

    Published 2015
    Table of Contents: “…Introduction -- Stress and Strain Analysis and Measurement -- Characteristics, Applications and Properties of Polymers -- Polymerization and Classification -- Differential Constitutive Equations -- Hereditary Integral Representations of Stress and Strain -- Time and Temperature Behavior of Polymers -- Elementary Viscoelastic Stress Analysis for Bars and Beams -- Viscoelastic Stress Analysis in Two and Three Dimensions -- Nonlinear Viscoelasticity -- Rate and Time-Dependent Failure: Mechanics and Predictive Models…”
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  7. 4587

    Principles of Polymer Engineering by McCrum, N. G.

    Published 2011
    Table of Contents: “…Structure of polymeric solids -- 3. The elastic properties of rubber -- 4. Viscoelasticity -- 5. Yield and fracture -- 6. …”
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  8. 4588
  9. 4589

    Biofuels from Lignocellulosic Biomass Innovations beyond Bioethanol

    Published 2016
    Table of Contents: “…Title Page; Copyright; Table of Contents; List of Contributors; Preface; Acknowledgments; Chapter 1: Fuels and Combustion; 1.1 Introduction; 1.2 The Options; 1.3 Spark Ignition; 1.4 Compression Ignition; 1.5 Highly Diluted Autoignition, HCCI; 1.6 Other Combustion Concepts; 1.7 Summary of Combustion Processes; References; Chapter 2: Fuel Class Higher Alcohols; 2.1 Introduction and Fuel Properties; 2.2 Performance in Spark-Ignition Engines; 2.3 Performance in Compression-Ignition Engines; 2.4 Production Pathways; 2.5 Outlook; 2.6 Conclusions; References; Chapter 3: Fuel Class Valerates. 3.1 Introduction and Fuel Properties3.2 Performance in Spark-Ignition Engines; 3.3 Performance in Compression-Ignition Engines; 3.4 Production Pathways; 3.5 Outlook; 3.6 Conclusions; Acknowledgments; References; Chapter 4: Butyl Ethers and Levulinates; 4.1 Introduction and Fuel Properties; 4.2 Performance in Compression-Ignition Engines; 4.3 Production Pathways; 4.4 Outlook; 4.5 Conclusions; References; Chapter 5: A Comprehensive Review of 2,5-Dimethylfuran as a Biofuel Candidate; 5.1 Introduction to DMF; 5.2 Production Pathways; 5.3 Performance in Spark-Ignition Engines. 5.4 Performance in Compression-Ignition Engines5.5 Outlook; 5.6 Conclusions; References; Chapter 6: Furanoids; 6.1 Introduction and Fuel Properties; 6.2 Performance in Spark-Ignition Engines; 6.3 Performance in Compression-Ignition Engines; 6.4 Production Pathways; 6.5 Outlook; 6.6 Conclusions; References; Chapter 7: Benzenoids; 7.1 Introduction; 7.2 Overview of Neat Fuel properties; 7.3 Performance in Compression-Ignition Engines; 7.4 Performance in Spark-Ignition Engines; 7.5 Production Pathways; 7.6 Outlook and Conclusions; References; Chapter 8: Biomass Pyrolysis Oils. 8.1 Introduction and Fuel Properties8.2 Performance Spark-Ignition Engines; 8.3 Performance in Compression-Ignition Engines; 8.4 Production Pathways from Pyrolysis Oil; 8.5 Outlook; 8.6 Conclusions; References; Index; End User License Agreement.…”
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  10. 4590
  11. 4591
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  14. 4594
  15. 4595
  16. 4596
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  18. 4598
  19. 4599
  20. 4600