1,720,964 research outputs found
UMD CS News Server (1993-07-30)
University of Minnesota, Duluth. Department of Computer Science. (1993). UMD CS News Server (1993-07-30). Retrieved from the University Digital Conservancy, https://hdl.handle.net/11299/252806
Bulldog Bytes (2003 Fall-2004 Spring)
University of Minnesota Duluth. Department of Computer Science. (2003). Bulldog Bytes (2003 Fall-2004 Spring). Retrieved from the University Digital Conservancy, https://hdl.handle.net/11299/260567
New Computer Science Course Fall 2014 CS 4995: Special Topics: Object-Oriented Languages (2014)
Course Description:
Examines advanced concepts regarding handling of types, encapsulation, polymorphism, inheritance, and functional programming in modern object-oriented languages. Includes programming with new language features in Java 8 and an introduction to the Scala programming language. This course will also cover some design patterns that are being incorporated into the design of modern object-oriented languages.New Computer Science Course Fall 2014
CS 4995: Special Topics: Object-Oriented Languages. Instructor Dr. Gary Shute.UMD Computer Science Department.Shute, Gary; University of Minnesota Duluth. Department of Computer Science. (2014). New Computer Science Course Fall 2014 CS 4995: Special Topics: Object-Oriented Languages (2014). Retrieved from the University Digital Conservancy, https://hdl.handle.net/11299/185997
Snow rendering for interactive snowplow simulation : supporting safety in snowplow design.
CTS Project #2008014During a snowfall, following a snowplow can be extremely dangerous. This danger comes from the human visualsystem\u2019s inability to accurately perceive the speed and motion of the snowplow, often resulting in rear-endcollisions. For this project, the researchers' goal is to use their understanding of how the human visual systemprocesses optical motion under the conditions created by blowing snow to create a simulation framework that couldbe used to test emergency lighting configurations that reduce rear-end collisions with snowplows. Reaction timesfor detecting the motion of the snowplow will be measured empirically for a variety of color set-ups on a simulatedsnowplow that slows down while driving on a virtual road with curves and hills. The simulated drivingenvironment will utilize a head-mounted, virtual reality display to render an improved snow cloud model behindthe snowplow. This driving simulator environment will serve as the basis for testing the effects of color andlighting alternatives on snowplows. The results of this work will move the researchers closer to determiningoptimal color and lighting configurations on actual snowplows
An impecunious gambler in a kind-hearted casino
Green, Richard F. (1986). An impecunious gambler in a kind-hearted casino. Retrieved from the University Digital Conservancy, https://hdl.handle.net/11299/211247
Optimal foraging and pessimal foraging, or the optimal avoidance of predators
Green, Richard F. (1988). Optimal foraging and pessimal foraging, or the optimal avoidance of predators. Retrieved from the University Digital Conservancy, https://hdl.handle.net/11299/211267
Optimal foraging in patches, each of which contains the same number of prey
Green, Richard F. (1987). Optimal foraging in patches, each of which contains the same number of prey. Retrieved from the University Digital Conservancy, https://hdl.handle.net/11299/211270
The giving-up-time rule as a strategy for animals foraging systematically in a patchy environment
Green, Richard F. (1987). The giving-up-time rule as a strategy for animals foraging systematically in a patchy environment. Retrieved from the University Digital Conservancy, https://hdl.handle.net/11299/211284
Optimal foraging for patchily distributed prey: random search
Green, Richard F. (1988). Optimal foraging for patchily distributed prey: random search. Retrieved from the University Digital Conservancy, https://hdl.handle.net/11299/211268
A stochastic model of optimal foraging: systematic stearch for negative-binomially distributed prey
Green, Richard F. (1987). A stochastic model of optimal foraging: systematic stearch for negative-binomially distributed prey. Retrieved from the University Digital Conservancy, https://hdl.handle.net/11299/211245
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