Suggested Topics within your search.
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Practical Environmental Statistics and Data Analysis.
Published 2011Table of Contents: “…Figure 15Figure 16; Figure 17; mkf19; Figure 15; Figure 16; Figure 17; Figure 20; Figure 15; Figure 16; Figure 17; Figure 19; Figure 20; Equation 1; Equation 2; Equation 3; Equation 4; Equation 1; Equation 2; Equation 3; Equation 4; Equation 1; Equation 2; Equation 3; Equation 4; Equation 1; Equation 2; Equation 3; Equation 4; Equation 1; Equation 2; Equation 3; Equation 4; Equation 1; Equation 2; Equation 3; Equation 4; Equation 1; Equation 2; Equation 3; Equation 4; Equation 1; Equation 2; Equation 3; Equation 1; Equation 2; Equation 3; Equation 4; Equation 1; Equation 2; Equation 3.…”
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Comprehensive Environmental Mass Spectrometry.
Published 2012Table of Contents: “…Figure 5Figure 5; Figure 5; Figure 5; Figure 5; Figure 5; Figure 5; Figure 5; Figure 5; Figure 5; Figure 5; Figure 5; Equation 1; Equation 1; Equation 1; Equation 1; Equation 1; Equation 1; Equation 2; Equation 3; Equation 4; Equation 5; Equation 6; Equation 7; Equation 8; Equation 2; Equation 3; Equation 2; Equation 3; Equation 2; Equation 3; Equation 4; Equation 5; Equation 2; Equation 3; Equation 2; Equation 3; Equation 4; Equation 5; Equation 6; Equation 7; Equation 8; Figure 6; Figure 6; Figure 6; Figure 6; Figure 6; Figure 6; Figure 6; Figure 6; Figure 6; Figure 6; Figure 6; Figure 6.…”
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Unsteady Transonic Aerodynamics.
Published 2000Table of Contents: “…Basic Equations for Unsteady Transonic Flow""; ""Flow Phenomena to be Modeled""; ""Basic Equations for Transonic Flow""; ""Navier-Stokes Equations""; ""Reynolds-Averaged Navier-Stokes Equations""; ""Euler Equations""; ""Potential Equation""; ""Summary of Equations Sets""; ""Boundary Conditions""; ""Navier-Stokes Equations""; ""Euler Equations""; ""Potential Equation""; ""Some Aspects of Transonic Potential Theory""; ""Indicial Theory""…”
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Data Analytics Handbook of Formulas and Techniques.
Published 2020Table of Contents: “…Heisenberg's Uncertainty Principle -- Schrödinger Equation -- Dirac Equation -- Maxwell's Equations -- Boltzmann's Equation for Entropy -- Planck-Einstein Equation -- Planck's Blackbody Radiation Formula -- Hawking Equation for Black Hole Temperature -- Navier-Stokes Equation for a Fluid -- Lagrangian for Quantum Chromodynamics -- Bardeen-Cooper-Schrieffer Equation for Superconductivity -- Josephson Effect -- Fermat's Last Theorem -- Methods for Data Measurement and Comparison -- Direct Comparison -- Indirect Comparison -- Data Measurement Scales -- Nominal Scale of Measurement…”
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Phase Transitions in Foods.
2nd ed.Published 2015Table of Contents: “…4.3.2 Ice Formation and Freeze-Concentration -- 4.3.2.1 Equilibrium freezing -- Eutectic solutions -- Supersaturated solutions -- 4.3.2.2 Nonequilibrium freezing -- 4.3.2.3 State diagrams -- References -- 5 Food components and polymers -- 5.1 Introduction -- 5.2 Carbohydrates -- 5.2.1 Sugars -- 5.2.1.1 Melting and crystallization -- 5.2.1.2 Glass transitions -- 5.2.1.3 Mixtures of sugars -- 5.2.2 Starch -- 5.2.2.1 Physical state of native starches -- 5.2.2.2 Physical state of starch and starch components -- Starch and starch components -- Effect of composition -- 5.2.2.3 Gelatinization and melting -- Birefringence -- X-Ray diffraction -- Differential scanning calorimetry -- Effects of water on gelatinization and melting -- Effects of solutes -- 5.2.2.4 Amylose-lipid complexes -- 5.3 Proteins -- 5.3.1 Denaturation -- 5.3.2 Glass Transition -- 5.3.2.1 Physical state of proteins -- Cereal proteins -- State diagrams -- 5.4 Lipids -- 5.4.1 Polymorphic Forms -- 5.4.1.1 Calorimetric studies -- 5.4.1.2 Other techniques -- 5.4.2 Melting of Fats and Oils -- 5.4.2.1 Melting behavior of fats and oils -- 5.4.2.2 Solid fat content -- 5.4.3 Mechanical Properties and Crystallinity -- 5.4.3.1 Mechanical properties and firmness -- 5.4.3.2 Plasticity -- References -- 6 Prediction of the physical state -- 6.1 Introduction -- 6.2 Prediction of Plasticization -- 6.2.1 Fractional Models -- 6.2.1.1 Gordon-Taylor equation -- 6.2.1.2 Couchman-Karasz equation -- 6.2.1.3 Other equations -- Couchman-Karasz equation-exact form -- Fox equation -- Pochan-Beatty-Hinman equation -- Linear equation -- Huang equation -- 6.2.2 Modeling Glass Transitions -- 6.2.2.1 Fractional modeling of water plasticization -- 6.2.2.2 Combined models of water activity and glass transition -- 6.2.2.3 Inclusion of water sorption models -- 6.3 Mechanical Properties and Flow.…”
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Exponentially dichotomous operators and applications
Published 2008Full text (MCPHS users only)
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