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A professor of medicine at the universities of Würzburg (1824 33), Zürich (1833 40), and Berlin (1840 59), Schönlein was the first to use the microscope in conjunction with chemical analyses of urine and blood in the diagnosis of disease.
MWNT distribution images in the cement matrix materials were acquired by using an optical microscope in conjunction with image processing tools.
A scanning electron microscope in conjunction with an energy-dispersive X-ray spectrometer (SEM-EDX) was used to study the characteristics of the minerals by spot and area scanning.
A scanning electron microscope in conjunction with energy-dispersive X-ray spectrometry (SEM EDS) was used to study the characteristics of the minerals and also to determine the distributions of elements in the macerals and in the minerals by spot and area scanning.
Images were collected using an Axioskop2 microscope in conjunction with AxioVision software (Zeiss).
All confocal images were obtained using a Zeiss Pascal laser scanning confocal microscope in conjunction with a 63X NA 1.4 Zeiss Apochromat or 40X NA 0.75 Axoplan Neofluar lens at room temperature using Vectashield (Vector labs) as an imaging medium and the Zeiss Pascal software.
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Phalloidin-stained fibers were visualized by confocal fluorescence microscope equipped with narrow band filters, by standard methods or by the Zeiss Axio Observer Z.1 microscope platform in conjunction with Zen 2011 Blue imaging software (Carl Zeiss)(insets in Figure 5A).
The mechanical properties of these films were analyzed using an atomic force microscope (AFM) in conjunction with Hysitron Triboscope.
The microstructure of the oxide layers was analyzed using a scanning electron microscope (SEM) in conjunction with energy dispersive spectroscopy (EDS) and X-ray diffraction analysis (XRD).
The plastic deformations in the solder joints were measured after each drop using microscope imaging in conjunction with the digital image correlation (DIC) technique.
The atomic force microscope (AFM) in conjunction with colloid probe, coated colloid probe and cell probe techniques offers excellent advantages over other competing techniques in the study of chemical and process engineering problems, especially directly quantifying the forces of interaction between (coated) colloids/cells and planar surfaces of process materials and equipment.
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