Practice and Theory of Automated Timetabling: First International Conference, Edinburgh, UK, August 29 - September 1, 1995. Selected Papers, Volum 1

Portada
Springer Science & Business Media, 2 d’oct. 1996 - 379 pàgines
Provides detailed information about the signal transduction pathways used by interferons to activate gene transcription. In addition, this book discusses how the same pathways are used by many other cytokines and thus provide a forum for cross-talk among these important biological response modifiers. Additionally, the book introduces the interferon system and describes the interferon-inducible genes whose products are responsible for the cellular actions of interferons. The nature of the interferon receptors and how the transcriptional signals are transmitted from the receptors on the cell surface to the genes in the nucleus are discussed in detail. Finally, the use of similar pathways of signal transduction by other cytokines is highlighted.
 

Continguts

Recent Developments in Practical Examination Timetabling
3
Genetic Algorithms
11
General Cooling Schedules for a Simulated Annealing Based
20
The New Wave
22
Scheduling Timetabling and Rostering A Special Relationship?
46
A Wren
70
Automated Time Table Generation Using Multiple Context Reasoning with
106
Building University Timetables Using Constraint Logic Programming
130
GABased Examination Scheduling Experience at Middle East Technical
212
Peckish Initialisation Strategies for Evolutionary Timetabling
227
A Memetic Algorithm for University Exam Timetabling
241
Automatic Timetabling in Practice
266
The Complexity of Timetable Construction Problems
283
Some Combinatorial Models for Course Scheduling
296
The PhaseTransition Niche for Evolutionary Algorithms in Timetabling
309
Three Methods Used to Solve an Examination Timetable Problem
327

Complete University Modular Timetabling Using Constraint Logic
146
Using Oz for College Timetabling
162
A Smart Genetic Algorithm for University Timetabling
181
A Genetic Algorithm Solving a Weekly CourseTimetabling Problem
198
Timetabling System
345
How to Decompose Constrained Course Scheduling Problems into
364
A list of other papers presented at the conference
377
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