LE

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AcronymDefinition
LELimited Edition
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LELimit(s) of Error
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LELife Expectancy
LELeading Edge
LELeicester (postcode, United Kingdom)
LELegal Entity
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LELife Extension
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LELast Exile (anime)
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LELess or Equal
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LELupus Erythematosus
LELarge Enterprise
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LELean Enterprise (management model)
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LELater Edit
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LESierra Leone Leone (national currency)
LELanguage Environment
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LELeucine-Enkephalin (opioid peptide neurotransmitter)
LELateral Epicondylitis
LELicensed Embalmer
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LELeukocyte Esterase
LELarge Exposure (banking)
LELadder Edition (gaming)
LELow Efficiency
LELuxury Edition
LELAN Emulation
LELegendary Event ((Fallensword gaming)
LELead Equivalent
LELaplacian Eigenmap (algorithm)
LELactation Educator
LELaser Engineer
LELiquid-Expanded (physics)
LELanguage Extender (Microsoft Windows CE)
LELaunch Escape
LELyapunov Exponent
LELinear Error
LELawful Evil (gaming)
LELogic Element
LELaptop Environment
LELow Explosive
LELink Enable(d)
LELoteprednol Etabonate
LELouisiana Eastern (railroad)
LELink Encapsulation (ATM)
LELocus Equations
LELong Eireannach (Gaelic: Ship of Ireland)
LELil’ Ethan (character in NBC's Passions)
LELudus Equinus (gaming website)
LELimited Egress
LEListener Echo-Loss
References in periodicals archive ?
Without considering the impact of other errors which are the constant bias and linear errors of the accelerometer, narrowband noise in the random phase wave model is analyzed.
[bar.C] represents the linear error vector in the y-axis of the milling machine:
[bar.Z] represents the linear error vector in the z-axis of the milling machine:
(ii) characterization first of linear errors and then of rotation errors of the rotational axis (TR),
The linear error correction model predicts that the size of this adjustment would be a linear function of the error-correction term in the case of continuous adjustments.
The DRO 200M for milling includes: full or partial bolt hole pattern calculations; compensation for tool offset with single tool diameter/length entry and for machine tool inaccuracies with three-segment linear error compensation.
The theoretical results indicate that the four body diagonal displacement errors are sensitive to all nine linear errors and two angular errors.
The Sequential Step Diagonal Measurement Method collects 12 sets of data for solving all nine linear errors and three squareness errors.
The tool tip position will be translated on X with [x.sub.r] (cumulated machine tool linear errors on X axis), on Y with [y.sub.r] (cumulated machine tool linear errors on Y axis), on Z with [z.sub.r] (cumulated machine tool linear errors on Z axis) and rotated with [PSI] (cumulated machine tool angular errors on X axis), with [phi] (cumulated machine tool angular errors on Y axis) and with [theta] (cumulated machine tool angular errors on Z axis).
The point that materializes the center of the tool will be translated on the x axis with [x.sub.r] (the linear errors cumulated on x axis), on y axis with yr (the linear errors cumulated on the y axis), on z axis with [z.sub.r] (the linear errors cumulated on z axis) and rotated with [PSI] (angular errors cumulated by the rotation around the x axis), with [phi] (angular errors cumulated by the rotation round the y axis) and with [theta] (angular errors cumulated by the rotation round the z axis).
More precisely, the measured linear errors are the vector sum of three errors:
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