104,156 research outputs found
Interview with Joseph T. Pfeifer
An interview with Joseph Theodore Pfeifer (1903-1989) about his time as superintendent of Ellis County schools during the Great Depression. Audio is on tape MS016_13-2_71-033https://scholars.fhsu.edu/koh/1085/thumbnail.jp
Proceedings of the 12th IFIP/IEEE International Conference on Management of Multimedia and Mobile Networks and Services (MMNS)
Proceedings of the 12th IFIP/IEEE International Conference on Management of Multimedia and Mobile Networks and Services (MMNS
The big exception: flavin-blue-light sensors.
Pfeifer A, Kottke T. The big exception: flavin-blue-light sensors. NACHRICHTEN AUS DER CHEMIE. 2011;59(1):23-28
Modeling Ant Navigation with an Autonomous Agent
Möller R, Lambrinos D, Pfeifer R, Labhart T, Wehner R. Modeling Ant Navigation with an Autonomous Agent. In: Pfeifer R, Blumberg B, Meyer J-A, Wilson SW, eds. From Animals To Animats 5, Proc. Fifth International Conference on Simulation of Adaptive Behavior. MIT Press; 1998: 185-194
Letter, [Author unclear] to Paulina T. Merritt
Handwritten letter to Paulina Merritt from an unknown author, October 1, 1876.
Humorappelle: Grundlagen aus Psychologie und Gesundheitskommunikation
Wagner A, Sukalla F. Humorappelle: Grundlagen aus Psychologie und Gesundheitskommunikation. In: Fischer F, Pfeifer C, Scheel T, eds. Humor und Gesundheit. Hogrefe; In Press
A mobile robot employing insect strategies for navigation
Lambrinos D, Möller R, Labhart T, Pfeifer R, Wehner R. A mobile robot employing insect strategies for navigation. Robotics and Autonomous Systems, special issue: Biomimetic Robots. 2000;30(1-2):39-64
Kohonens Self-Organizing Maps for Modeling the Formation of the Auditory Cortex of a Bat
Martinetz T, Ritter H, Schulten K. Kohonens Self-Organizing Maps for Modeling the Formation of the Auditory Cortex of a Bat. In: Pfeifer R, ed. Connectionism in perspective. Amsterdam: North-Holland; 1988: 403-412
Identifizierung von Promotoren in Corynebacterium glutamicum
Busche T, Pfeifer-Sancar K, Rückert C, Kalinowski J. Identifizierung von Promotoren in Corynebacterium glutamicum. BIOspektrum. 2014;20(3):284-287
Designing a system for map-based localization in dynamic environments
This paper deals with map-based self-localization in a dynamic environment. In order to detect localization features, laser rangefinders traditionally scan a plane: we hypothesize the existence of a "low frequency cross-section" of the 3D environment (informally, over people heads), where even highly dynamic environments become more "static" and "regular". We show that, by accurately choosing the laser scanning plane, problems related to moving objects, occluded features, etc. are simplified. Experimental results showing hours of continuous work in a real-world, crowded scenario, with an accuracy of about 2.5cm and a speed of 0.6m/sec, demonstrate the feasibility of the approach
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