Search Results - "Polymer"

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  1. 1301
  2. 1302
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  5. 1305

    Chemistry by Chang, Raymond

    Published 2007
    Table of Contents: “…Chemistry: the study of change -- Atoms, molecules, and ions -- Mass relationships in chemical reactions -- Reactions in aqueous solution -- Gases -- Thermochemistry -- Quantum theory and the electronic structure of atoms -- Periodic relationship among the elements -- Chemical bonding I: basic concepts -- Chemical bonding II: molecular geometry and hybridization of atomic -- Orbitals -- Intermolecular forces and liquids and solids -- Physical properties of solutions -- Chemical kinetics -- Chemical equilibrium -- Acids and bases -- Acid-base equilibria and solubility equilibria -- Chemistry in the atmosphere -- Entropy, free energy, and equilibrimn -- Electrochemistry -- Metallurgy and the chemistry of metals -- Nonmetallic elements and their compounds -- Transition metal chemistry and coordination compounds -- Nuclear chemistry -- Organic chemistry -- Synthetic and natural organic polymers.…”
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  6. 1306

    Renewable Energy and Sustainable Technologies for Building and Environmental Applications Options for a Greener Future

    Published 2016
    Table of Contents: “…Inverse problem for phase change materials and preparation in building envelope / Xin Wang, Rui Yang and Saffa Riffat -- Natural composite membranes for water remediation : towards a sustainable tomorrow / Noor Hana Hanif Abu Bakar and Wei Leng Tan -- Polymeric heat exchangers : effect of chemistry and chemical composition to their performance / Mohd Firdaus Yhaya -- Solar induced ventilation strategies in contemporary tropical buildings : a review / Mazran Ismail and Abdul Malek Abdul Rahman -- Insights to current lighting technologies and low environmental impact artificial lighting / Xiaofeng Zheng -- Applications of air-to-air energy recovery system in various climatic conditions : towards reducing energy consumption in buildings / Mardiana Idayu Ahmad, Fatin Zafirah Mansur and Saffa Riffat -- Toplighting systems for improving indoor environment : a review / Karam M. …”
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  7. 1307
  8. 1308
  9. 1309
  10. 1310
  11. 1311
  12. 1312
  13. 1313
  14. 1314
  15. 1315

    Phillips' Science Of Dental Materials by Anusavice, Kenneth J., Phillips, Ralph, Shen, Chiayi, Rawls, H. Ralph

    Published 2013
    Table of Contents: “…Anusavice -- Dental polymers / H. Ralph Rawls -- Biocompatibility / Kenneth J. …”
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  16. 1316

    CHEMISTRY by Chang, Raymond, Overby, Jason

    Published 2018
    Table of Contents: “…1 Chemistry: The Study of Change2 Atoms, Molecules, and Ions3 Mass Relationships in Chemical Reactions4 Reactions in Aqueous Solutions5 Gases6 Thermochemistry7 Quantum Theory and the Electronic Structure of Atoms8 Periodic Relationships Among the Elements9 Chemical Bonding I: Basic Concepts10 Chemical Bonding II: Molecular Geometry and Hybridization of Atomic Orbitals11 Intermolecular Forces and Liquids and Solids12 Physical Properties of Solutions13 Chemical Kinetics14 Chemical Equilibrium15 Acids and Bases16 Acid-Base Equilibria and Solubility Equilibria17 Entropy, Free Energy, and Equilibrium18 Electrochemistry19 Nuclear Chemistry20 Chemistry in the Atmosphere21 Metallurgy and the Chemistry of Metals22 Nonmetallic Elements and Their Compounds 23 Transition Metals Chemistry and Coordination Compounds24 Organic Chemistry25 Synthetic and Natural Organic PolymersAppendix 1 Derivation of the Names of the ElementsAppendix 2 Units for the Gas ConstantAppendix 3 Thermodynamic Data at 1 atm and 25 degrees CAppendix 4 Mathematical Operations…”
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  17. 1317
  18. 1318

    Nanocarriers for drug delivery nanoscience and nanotechnology in drug delivery

    Published 2019
    Table of Contents: “…Chapter 1: Efficient Nanocarries for Drug-Delivery Systems: Types and Fabrication - Chapter 2: Nanohybrid Filler-Based Drug-Delivery System - Chapter 3: Hydrogel Nanocomposite Systems: Physico-Chemical Characterization and Application for Drug-Delivery Systems - Chapter 4: Nanopharmaceuticals as Drug-Delivery Systems: For, Against, and Current Applications - Chapter 5: Nucleic Acid-Based Nanocarries - Chapter 6: Protien Nanocarries for Targeted Drug Delivery for Cancer Therapy - Chapter 7: TiO2 Based Nanocarries for Drug Delivery - Chapter 8: Lipid-Based Nanoparticles for Drug-Delivery Systems - Chapter 9: Mesoporous Silica-Based Nano Drug-Delivery System Synthesis, Characterization, and Applications - Chapter 10: Hydrogel Nanocomposite Systems: Characterization and Application in Drug-Delivery Systems - Chapter 11: Mesoporous Silica as Carrier for Drug-Delivery Systems - Chapter 12: Cell-Line Based Studies of Nanotechnology Drug-Delivery Systems: A Brief Review - Chapter 13: Nanoscale Drug-Delivery Systems: In Vitro and In Vivo Characterization - Chapter 14: Self- Nanoemulsifying Drug-Delivery System and Solidified Nanoemulsifying Drug-Delivery System - Chapter 15: Carbon and Carbon Nanotube Drug Delivery and Its Characterization, Properties, and Applications - Chapter 16: Carbon Nanotubes: Synthesis, Characterization, and Applications in Drug-Delivery Systems - Chapter 17: Polymer-Based Nanomaterials for Drug-Delivery Carries - Chapter 18: Polymeric Nanomaterials: Methods of Preparation and Characterization…”
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  19. 1319

    A SMALL SCALE APPROACH TO Organic Laboratory Techniques by Pavia, Donald L, Lampman, Gary M, Kriz, George S, Engel, Randall G

    Published 2016
    Table of Contents: “…Experiment 51C. Synthesizing the Polymer by Ring-Opening Metathesis Polymerization ROMP) Essay. …”
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  20. 1320

    Introduction to Organic Laboratory Techniques A Small-Scale Approach by Engel, Randall G., Pavia, Donald L., Lampman, Gary M., Kriz, George S.

    Published 2011
    Table of Contents: “…Purpose.Part One: The Techniques.Technique 1: Laboratory Safety.Technique 2: The Laboratory Notebook, Calculations, and Laboratory Records.Technique 3: Laboratory Glassware: Care and Cleaning.Technique 4: How to Find Data for Compounds: Handbooks and Catalogs.Technique 5: Measurement of Volume and Weight.Technique 6: Heating and Cooling Methods.Technique 7: Reaction Methods.Technique 8: Filtration.Technique 9: Physical Constants of Solids: The Melting Point.Technique 10: Solubility.Technique 11: Crystallization: Purification of Solids.Technique 12: Extractions, Separations, and Drying Agents.Technique 13: Physical Constants of Liquids: The Boiling Point and Density.Technique 14: Simple Distillation.Technique 15: Fractional Distillation, Azeotropes.Technique 16: Vacuum Distillation, Manometers.Technique 17: Sublimation.Technique 18: Steam Distillation.Technique 19: Column Chromatography.Technique 20: Thin-Layer Chromatography.Technique 21: High-Performance Liquid Chromatography (HPLC).Technique 22: Gas Chromatography.Technique 23: Polarimetry.Technique 24: Refractometry.Technique 25: Infrared Spectroscopy.Technique 26: Nuclear Magnetic Resonance Spectroscopy (Proton NMR).Technique 27: Carbon-13 Nuclear Magnetic Resonance Spectroscopy.Technique 28: 6 Mass Spectrometry.Technique 29: Guide to the Chemical Literature.Part Two: Introduction to Basic Laboratory Techniques.Experiment 1: Solubility.Experiment 2: Crystallization.Experiment 3: Extraction.Experiment 4: A Separation and Purification Scheme.Experiment 4A: Extractions with a Separatory Funnel.Experiment 5: Chromatography.Experiment 5A: Thin-Layer Chromatography.Experiment 5B: Selecting the Correct Solvent for Thin-Layer Chromatography.Experiment 5C: Monitoring a Reaction with Thin Layer Chromatography.Experiment 5D: Column Chromatography.Experiment 6: Simple and Fractional Distillation.Experiment 7: Infrared Spectroscopy and Boiling-Point Determination.Experiment 8: Acetylsalicylic Acid.Experiment 9: Acetaminophen.Experiment 10: TLC Analysis of Analgesic Drugs.Experiment 11: Isolation of Caffeine.Experiment 11A: Extraction of Caffeine from Tea.Experiment 11B: Isolation of Caffeine from a Tea Bag.Experiment 12: Isopentyl Acetate (Banana Oil).Experiment 13: Isolation of Eugenol from Cloves.Experiment 14: Spearmint and Caraway Oil: (+)- and (-)-Carvones.Experiment 15: Isolation of Chlorophyll and Carotenoid Pigments from Spinach.Experiment 16: Ethanol from Sucrose.Part Three: Introduction to Molecular Modeling.Experiment 17: An Introduction to Molecular Modeling.Experiment 17A: The Conformations of n-Butane: Local Minima.Experiment 17B: Cyclohexane Chair and Boat Conformations.Experiment 17C: Substituted Cyclohexane Rings (Critical Thinking Exercise).Experiment 17D: cis- and trans-2-Butene.Experiment 18: Computational Chemistry.Experiment 18A: Heats of Formation: Isomerism, Tautomerism, and Regioselectivity.Experiment 18B: Heats of Reaction: SN1 Reaction Rates.Experiment 18C: Density-Electrostatic Potential Maps: Acidities of Carboxylic Acids.Experiment 18D: Density-Electrostatic Potential Maps: Carbocations.Experiment 18E: Density-LUMO Maps: Reactivities of Carbonyl Groups.Part Four: Preparations and Reactions of Organic Compounds.Experiment 19: Reactivities of Some Alkyl Halides.Experiment 20: Nucleophilic Substitution Reactions: Competing Nucleophiles.Experiment 20A: Competitive Nucleophiles with 1-Butanol or 2-Butanol.Experiment 20B: Competitive Nucleophiles with 2-Methyl-2-Propanol.Experiment 20C: Analysis.Experiment 21: Synthesis of n-Butyl Bromide and t-Pentyl Chloride.Experiment 21A: n-Butyl Bromide.Experiment 21B: t-Pentyl Chloride.Experiment 22: 4-Methylcyclohexene.Experiment 23: Methyl Stearate from Methyl Oleate.Experiment 24: Gas-Chromatographic Analysis of Gasolines.Experiment 25: Biodiesel.Experiment 25A: Biodiesel from Coconut Oil.Experiment 25B: Biodiesel from Other Oils.Experiment 25C: Analysis of Biodiesel.Experiment 26: Ethanol from Corn.Experiment 27: Chiral Reduction of Ethyl Acetoacetate; Optical Purity Determination.Experiment 27A: Chiral Reduction of Ethyl Acetoacetate.Experiment 27B: NMR Determination of the Optical Purity of Ethyl (S)-3-Hydroxybutanoate.Experiment 28: Nitration of Aromatic Compounds Using a Recyclable Catalyst.Experiment 29: Reduction of Ketones Using Carrots as Biological Reducing Agents.Experiment 30: Resolution of (+/-)-a-Phenylethylamine and Determination of Optical Purity.Experiment 30A: Resolution of (+/-)-a-Phenylethylamine.Experiment 30B: Determination of Optical Purity Using NMR and a Chiral Resolving Agent.Experiment 31: An Oxidation-Reduction Scheme: Borneol, Camphor, Isoborneol.Experiment 32: Multistep Reaction Sequences: The Conversion of Benzaldehyde to Benzilic Acid.Experiment 32A: Preparation of Benzoin by Thiamine Catalysis.Experiment 32B: Preparation of Benzil.Experiment 32C: Preparation of Benzilic Acid.Experiment 33: Triphenylmethanol and Benzoic Acid.Experiment 33A: Triphenylmethanol.Experiment 33B: Benzoic Acid.Experiment 34: Aqueous-Based Organozinc Reactions.Experiment 35: Sonogashira Coupling of Iodosubstituted Aromatic Compounds with Alkynes using a Palladium Catalyst.Experiment 36: Grubbs Catalyzed Metathesis of Eugenol with 1,4-Butenediol to Prepare a Natural Product.Experiment 37: The Aldol Condensation Reaction: Preparation of Benzalacetophenones (Chalcones).Experiment 38: A Green Enantioselective Aldol Condensation Reaction.Experiment 39: Preparation of an a,b-Unsaturated Ketone via Michael and Aldol Condensation Reactions.Experiment 40: Preparation of Triphenylpyridine.Experiment 41: 1,4-Diphenyl-1,3-Butadiene.Experiment 42: Relative Reactivities of Several Aromatic Compounds.Experiment 43: Nitration of Methyl Benzoate.Experiment 44: Benzocaine.Experiment 45: N,N-Diethyl-m-toluamide: The Insect Repellent OFF".Experiment 46: Sulfa Drugs: Preparation of Sulfanilamide.Experiment 47: Preparation and Properties of Polymers: Polyester, Nylon, and Polystyrene.Experiment 49A: Polyesters.Experiment 49B: Polyamide (Nylon).Experiment 49C: Polystyrene.Experiment 49D: Infrared Spectra of Polymer Samples.Experiment 48: Ring-Opening Metathesis Polymerization (ROMP) Using a Grubbs Catalyst: A Three-Step Synthesis of a Polymer.Experiment 48A: Diels-Alder Reaction of Furan and Maleic Anhydride.Experiment 48B: Ring Opening of Anhydride in Methanol.Experiment 48C: Ring-Opening Metathesis Polymerization (ROMP).Experiment 48A: Diels-Adler Reaction.Experiment 48B: Conversion of the Diels-Adler Adduct to the Diester.Experiment 48C: Synthesizing the Polymer by Ring-Opening Metathesis Polymerization (ROMP).Experiment 49: The Diels-Alder Reaction of Cyclopentadiene with Maleic Anhydride.Experiment 50: Diels-Alder Reaction with Anthracene-9-methanol.Experiment 51: Photoreduction of Benzophenone and Rearrangement of Benzpinacol to Benzopinacolone.Experiment 51A: Photoreduction of Benzophenone.Experiment 51B: Synthesis of b-Benzpinacolone: The Acid-Catalyzed Rearrangement of Benzpinacol.Experiment 52: Luminol.Experiment 53: Analysis of A Diet Soft Drink by HPLC.Experiment 54: Carbohydrates.Part Four: Identification of Organic Substances.Experiment 55: Identification of Unknowns.Experiment 55A: Solubility Tests.Experiment 55B: Tests of the Elements (N, S, X).Experiment 55C: Tests for Unsaturation.Experiment 55D: Aldehydes and Ketones.Experiment 55E: Carboxylic Acids.Experiment 55F: Phenols.Experiment 55G: Amines.Experiment 55H: Alcohols.Experiment 55I: Esters.Part Six: Project-Based Experiments.Experiment 56: Preparation of a C-4 or C-5 Acetate Ester.Experiment 57: Isolation of Essential Oils from Allspice, Caraway, Cinnamon, Cloves, Cumin, Fennel, or Star Anise.Experiment 57A: Isolation of Essential Oils by Steam Distillation.Experiment 57B: Identification of the Constituents of Essential Oils by Gas Chromatography-Mass Spectrometry.Experiment 57C: Investigation of the Essential Oils of Herbs and Spices-A Mini-Research Project.Experiment 58: Competing Nucleophiles in SN1 and SN2 Reactions: Investigations Using 2-Pentanol and 3-Pentanol.Experiment 59: Friedel-Crafts Acylation.Experiment 60: The Analysis of Antihistamine Drugs by Gas Chromatography-Mass Spectrometry.Experiment 61: Carbonation of an Unknown Aromatic Halide.Experiment 62 The Aldehyde Enigma.Experiment 63 Synthesis of Substituted Chalcones: A…”
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