3 edition of Advanced one-dimensional optical strain measurement system--phase IV found in the catalog.
Advanced one-dimensional optical strain measurement system--phase IV
by National Aeronautics and Space Administration, National Technical Information Service, distributor in [Washington, DC, Springfield, Va
Written in English
|Other titles||Advanced one dimensional optical strain measurement system--phase IV.|
|Statement||Christian T. Lant.|
|Series||NASA contracator report -- 190760., NASA contractor report -- NASA CR-190760.|
|Contributions||United States. National Aeronautics and Space Administration.|
|The Physical Object|
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Antiferroelectrics (AFE) can exhibit a “shape memory function controllable by electric field”, with huge isotropic volumetric expansion (%) associated with the AFE to Ferroelectric (FE) phase transformation. Small inverse electric field application can realize the original AFE phase. The response speed is quick ( ms). In the PbNb[(ZrSn)1-yTiy]O3 (PNZST) system, the Cited by: 7. CIVIL ENGINEERING. Curriculum [Regulation B ( Batch only)] SEMESTER I. Course Code Course Name L T P C THEORY U1GEB01 Communicative English - I 3 0 0 3 U1GEB02 Engineering Mathematics - I 3 1 0 4 U1GEB03 Engineering Physics - I 3 0 0 3 U1GEB04 Engineering Chemistry - I 3 0 0 3 U1GEB05 Basic Electrical and Electronics Engineering 3 0 0 3 U1GEB06 .
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Get this from a library. Advanced one-dimensional optical strain measurement system--phase IV. [Christian T Lant; United States. National Aeronautics and Space Administration.]. Feasibility Study for the Advanced One-Dimensional High Temperature Optical Strain Measurement System--Phase III Christian T.
Lant Sverdrup Technology, Inc. Lewis Research Center Group Brook Park, Ohio June Prepared for Lewis Research Center Under Contract NAS National Aeronautics and Space Administration.
Open Library is an open, editable library catalog, building towards a web page for every book ever published. TWO-DIMENSIONAL HIGH TEMPERATURE OPTICAL STRAIN MEASUREMENT SYSTEM - PHASE I1 Christian T.
Lant Sverdrup Technology, Inc. NASA Lewis Research Center Group Cleveland, Ohio 1. SUMMARY The work performed unde~ this contract covered the second phase of a. This comprehensive volume covers the latest developments in advanced dielectric, piezoelectric, and ferroelectric materials.
Divided into eight parts, it explores high strain high performance piezo- and ferroelectric single crystals, electric field-induced effects and domain engineering, morphotropic phase boundary-related phenomena, high power piezoelectric and microwave dielectric materials.
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THERMOELASTIC THEORY OF STRESSED CRYSTALS The adiabatic bulk modulus is BS = f (B S i i + 2BS12) = = l/KS, () () () and from () we then have the usual thermodynamic result or BS - BT = TV1(pBT)2/Cv, KT - KS TVIP2/Cp, since Cp/Cv = KT/KS It should be emphasized that these adiabatic-isothermal differences were derived Cited by: The measured properties of the film should include optical transmittance, four point probe conductivity, and direct measurement of the film thickness.
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