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  1. 161
    “…The most telling link between a quintile rank and diabetes risk was telegraphed by energy intake (kcal/day) that established the cumulative GLoad per rat for the entire trial, which was apparent from the first week of feeding. …”
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  2. 162
    “…Simplified FlexureA Few Special AspectsFabrication and Design ProblemsNondestructive Quality ControlCONCEPTION AND DESIGNDesign of a Composite PieceThe LaminateFailure of LaminatesSizing of LaminatesJOINING AND ASSEMBLYRiveting and BoltingBondingInsertsCOMPOSITE MATERIALS AND AEROSPACE CONSTRUCTIONAircraftHelicoptersPropeller Blades for AirplanesTurbine Blades in CompositesSpace ApplicationsCOMPOSITE MATERIALS FOR OTHER APPLICATIONS:Composite Materials and the Manufacturing of AutomobilesComposites in Naval ConstructionSports and RecreationOther ApplicationsPART TWO: MECHANICAL BEHAVIOR OF LAMINATED MATERIALSANISOTROPIC ELASTIC MEDIA:Review of NotationsOrthotropic MaterialsTransversely Isotropic MaterialsELASTIC CONSTANTS OF UNIDIRECTIONAL COMPOSITES:Longitudinal Modulus Poisson CoefficientTransverse ModulusShear ModulusThermoelastic PropertiesELASTIC CONSTANTS OF A PLY ALONG AN ARBITRARY DIRECTION:Compliance CoefficientsStiffness CoefficientsCase of Thermomechanical LoadingMECHANICAL BEHAVIOR OF THIN LAMINATED PLATES:Laminate with Miplane SymmetryLaminate without Miplane SymmetryPART THREE: JUSTIFICATIONS, COMPOSITE BEAMS, THICK PLATESELASTIC COEFFICIENTSElastic Coefficients in an Orthotropic MaterialElastic Coefficients for a Transversely Isotropic MaterialCase of a PlyTHE HILL-TSAI FRACTURE CRITERION:Isotropic Material: Von Mises CriterionOrthotropic Material: Hill-Tsai CriterionEvaluation of the Resistance of a Unidirectional Ply with Respect to the Direction of LoadingCOMPOSITE BEAMS IN FLEXURE:Flexure of Symmetric Beams with Isotropic PhasesThe Case of any Cross Section (Asymmetric)COMPOSITE BEAMS IN TORSION:Uniform TorsionLocation of the Torsion CenterFLEXURE OF THICK COMPOSITE PLATES:Preliminary RemarksDisplacement FieldStrainsConstitutive RelationsEquilibrium EquationsTechnical Formulation for BendingExamplesPART FOUR: APPLICATIONSLEVEL 1Simply Supported Sandwich BeamPoisson Coefficient of a Unidirectional LayerHelicopter BladeTransmission Shaft for TrucksFlywheel in Carbon/EpoxyWing Tip Made of Carbon/EpoxyCarbon Fibers Coated with NickelTube Made of Glass/Epoxy Under PressureFilament Wound Reservoir, Winding AngleFilament Wound Reservoir, Taking into Account the HeadsDetermination of the Volume Fraction of Fibers by PyrolysisLever Arm Made of Carbon/Peek Unidirectionals and Short FibersTelegraphic Mast in Glass/ResinUnidirectional Ply of HR CarbonManipulator Arm of Space ShuttleLEVEL 2Sandwich Beam: Simplified Calculations of the Shear CoefficientProcedure for Calculation of a LaminateKevlar/Epoxy Laminates: Evolution of Stiffness Depending on the Direction of the LoadResidual Thermal Stresses Due to Curing of the LaminateThermoelastic Behavior of a Tube Made of Filament Wound Glass/PolyesterPolymeric Tube Loaded by Thermal Load and CreepFirst Ply Fracture of a Laminate. …”
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