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Object[Data, SurfaceTension]

Measurements of the surface tension of a sample at varying concentrations.

Organizational Information

    Name

    Name of this Object.
    Format: Single
    Class: String
    Programmatic Pattern: _String
    Pattern Description: A string.

    ID

    ID of this Object.
    Format: Single
    Class: String
    Programmatic Pattern: _String
    Pattern Description: The ID of this object.

    Object

    Object of this Object.
    Format: Single
    Class: Expression
    Programmatic Pattern: Object[Data, SurfaceTension, _String]
    Pattern Description: The object reference of this object.

    Type

    Type of this Object.
    Format: Single
    Class: Expression
    Programmatic Pattern: Object[Data, SurfaceTension]
    Pattern Description: Object[Data, SurfaceTension]

    Notebook

    Notebook this object belongs to.
    Format: Single
    Class: Link
    Programmatic Pattern: _Link
    Pattern Description: An object of that matches ObjectP[Object[LaboratoryNotebook]].

    Replicates

    Data acquired under replicated experimental conditions to this data.
    Format: Multiple
    Class: Link
    Programmatic Pattern: _Link

General

Experimental Results

    Concentrations

    For each member of the dilution curve, the concentrations of the sample that were measured.
    Format: Multiple
    Class: Real
    Programmatic Pattern: Gram Hold[GreaterP[0 Molar] | GreaterP[0 -----] | GreaterP[0 Percent]] Liter

    DilutionFactors

    For each member of the dilution curve, the dilution factors of the sample that were measured.
    Format: Multiple
    Class: Real
    Programmatic Pattern: RangeP[0, 1]

    Temperatures

    For each member of the dilution curve, the temperatures (as measured inside the instrument) at which the measurements were acquired.
    Format: Multiple
    Class: Real
    Unit: 1 degree Celsius
    Programmatic Pattern: GreaterP[0 Kelvin]

    SurfaceTensions

    For each member of the dilution curve, the surface tensions measured.
    Format: Multiple
    Class: Real
    Unit: 1 millinewton per meter
    Programmatic Pattern: Newton Newton Hold[RangeP[-50 Milli ------, 500 Milli ------]] Meter Meter

    SurfacePressures

    For each member of the dilution curve, the decrease in surface tensions measured.
    Format: Multiple
    Class: Real
    Programmatic Pattern: Newton Hold[GreaterEqualP[-10 Milli ------]] Meter

Sample Loading

    AssayContainers

    For each member of the dilution curve, the container the sample was in during measurement.
    Format: Multiple
    Class: Link
    Programmatic Pattern: _Link

    AssayPositions

    For each member of the dilution curve, the well position of the sample in the measurement plate.
    Format: Multiple
    Class: String
    Programmatic Pattern: WellPositionP

Analysis & Reports

    CriticalMicelleConcentration Analyses

    Critical micelle concentration analyses performed on the surface tensions.
    Format: Multiple
    Class: Link
    Programmatic Pattern: _Link

    CriticalMicelleConcentration

    The concentration of surfactants above which micelles form and all additional surfactants added to the system go to micelles. This is the concentration where increasing the concentration of the sample stops decreasing the surface tension.
    Format: Single
    Class: Real
    Programmatic Pattern: Gram Hold[GreaterP[0 Molar] | GreaterP[0 -----] | RangeP[0 Percent, 100 Percent]] Liter

    ApparentPartitioning Coefficient

    An apparent partitioning coefficient used to quantify partitioning the air-water interface. This is the inverse of the concentration where increasing the concentration of the sample starts decreasing the surface tension.
    Format: Single
    Class: Real
    Programmatic Pattern: 0 Liter 0 Hold[GreaterP[-----] | GreaterP[0 -----] | GreaterP[-------]] Molar Gram Percent

    SurfaceExcessConcentration

    The amount of surfactant adsorbed at the air water interface per surface area. This is calculated by taking the negative of the slope of the concentration dependent region of a surface tension vs. log of concentration graph divided by the temperature the measurement was taken at and the ideal gas constant.
    Format: Single
    Class: Real
    Programmatic Pattern: Mole Hold[GreaterP[0 ------]] 2 Meter

    CrossSectionalArea

    The area of the surfactant molecule at the surface. This is calculated by taking the inverse of the SurfaceExcessConcentration and the Avogadro constant.
    Format: Single
    Class: Real
    Programmatic Pattern: 2 Hold[GreaterP[0 Meter ]]

    MaxSurfacePressure

    The largest surface pressure of the dilutions. This is also the difference between the surface tension of the diluent and the surface tension of the most concentrated dilution.
    Format: Single
    Class: Real
    Programmatic Pattern: Newton Hold[GreaterP[0 Milli ------]] Meter
Last modified on Mon 26 Sep 2022 15:43:44