Gertrude Rempfer

Affiliations: 
Portland State University, Portland, OR, United States 
Area:
Optics Physics, Electricity and Magnetism Physics
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"Gertrude Rempfer"
Bio:

(1912 - 2011)
https://www.microscopy.org/images/posters/Rempfer.pdf
DOI: 10.1103/PhysRev.58.887

Mean distance: (not calculated yet)
 

Parents

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Joseph Edmunds Henderson grad student 1939 University of Washington
 (The energy losses attending thermionic and field emission of electrons from metals.)
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Publications

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Könenkamp R, Word RC, Rempfer GF, et al. (2010) 5.4 nm spatial resolution in biological photoemission electron microscopy. Ultramicroscopy. 110: 899-902
Word R, Rempfer G, Almaraz L, et al. (2010) 5.4 nm Spatial Resolution Obtained from an Aberration-Corrected Photoemission Electron Microscope Utilizing an Electrostatic Mirror Microscopy and Microanalysis. 16: 158-159
Könenkamp R, Jones T, Elstner J, et al. (2008) Image properties in an aberration-corrected photoemission electron microscope Physics Procedia. 1: 505-511
Panitz JA, Rempfer G. (2006) A transmission electron microscope for lecture demonstrations American Journal of Physics. 74: 953-956
Tavkhelidze A, Bibilashvili A, Jangidze L, et al. (2006) Observation of quantum interference effect in solids Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures. 24: 1413
Gilbert B, Andres R, Perfetti P, et al. (2000) Charging phenomena in PEEM imaging and spectroscopy. Ultramicroscopy. 83: 129-39
Rempfer GF, Fyfield MS, Griffith OH. (1998) Lenses for Electron Microscopy and Microanalysis: Shadowgraph Method of Determining Focal Properties and Aberration Coefficients Microscopy and Microanalysis : the Official Journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada. 4: 34-49
Rempfer GF, Desloge DM, Skoczylas WP, et al. (1997) Simultaneous correction of spherical and chromatic aberrations with an electron mirror: An electron optical achromat Microscopy and Microanalysis. 3: 14-27
Habliston DL, Hedberg KK, Birrell GB, et al. (1995) Photoelectron imaging of cells: photoconductivity extends the range of applicability. Biophysical Journal. 69: 1615-24
Stasio Gd, Desloge D, Skoczylas WP, et al. (1995) Low Energy Electron Microscopy (LEEM) imaging of a neuron network Physica Scripta. 51: 411-412
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