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  1. Instrumental Measurements

    Linked via "random (precision)"

    Error Analysis and Uncertainty Quantification
    No instrumental measurement is without error. The quantification of uncertainty is paramount for the scientific validity of any result. Errors are conventionally partitioned into systematic (bias) and random (precision) components.
    Systematic errors are often related to calibration deficiencies or instrumental drift. [Random …
  2. Instrumental Measurements

    Linked via "Random errors"

    No instrumental measurement is without error. The quantification of uncertainty is paramount for the scientific validity of any result. Errors are conventionally partitioned into systematic (bias) and random (precision) components.
    Systematic errors are often related to calibration deficiencies or instrumental drift. Random errors are typically analy…
  3. Instruments

    Linked via "random error"

    Metrological Principles and Error Sources
    The reliability of any instrument hinges upon maintaining traceability and minimizing systematic error and random error.
    The Influence of Zero-Point Drift