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The results shown here were obtained at low temperatures (20 K) by mounting the sample in a microscope cryostat for spatially resolved photoluminescence measurements (see Figure 1a).
Specular back-reflection from the artifact surface was avoided by mounting the sample with a 3.0 degree tilt relative to the incident OCT beam.
The native starch sample was examined by scanning electron microscopy (SEM) by mounting the sample on aluminum microscopy stubs using sticky tabs.
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The investigation was performed at liquid nitrogen temperature by mounting the samples in temperature-regulated cryostat.
NAP-XPS measurements were conducted at the ISISS beam line of synchrotron HZB/BESSY II in Berlin.[ 23] NAP-XPS experiments under electrochemical polarization were realized by mounting the samples between two platinum sheets (top one with a hole), which served as mechanical fixation and as electrical contacts of the two electrodes.
UV reflectance was obtained in the solid state by mounting the crystalline sample on a barium sulphate substrate behind a quartz window.
The erosion corrosion (E C) performance of the three aluminide coatings during 100 h exposure at ~ 600 °C in a coal-firing laboratory-scale fluidized-bed combustor (FBC) was investigated, by mounting the aluminized samples onto a rig which maintained rotation for accelerating the relative impacting speed of flying solid particles (mainly SiO2 bed materials).
By mounting, the powdered samples are attached on an adhesive surface, like sticky tape or not completely dried epoxy resin.
After mounting, the samples were sputtered with gold (~20 nm).
By mounting the DRIFT accessory in the spectrometer's sample compartment and establishing analytical method, data acquisition time is reduced permitting large numbers of samples to be processed.
Endocardial samples were prepared by mounting the excised LV free wall in an OCT block, separating the endocardial, mid-myocardial and epicardial regions by sectioning on an HM 560 cryostat and homogenizing as above.
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