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Found 42 results
[ Author(Desc)] Title Type Year
Filters: Keyword is Process Models  [Clear All Filters]
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Chachere, J. Design Project Optimization. (2004). at <https://purl.stanford.edu/yz806ts5247>
Chachere, J. Improving Project Performance by Predicting Engineering Impacts on Operations Failure Risks Using a Quantitative Model of Product, Organization, Process, and Environment. (2005). at <https://purl.stanford.edu/zz183dr4753>
Chachere, J., Kunz, J. & Levitt, R. Observation, Theory, and Simulation of Integrated Concurrent Engineering: Risk Analysis Using Formal Models of Radical Project Acceleration. (2004). at <https://purl.stanford.edu/dq405zf4697>
Chachere, J. Causes and Effects of Rationale Clarity in the AEC Design Industry. (2009). at <https://purl.stanford.edu/qk265gz2370>
Chachere, J. Coordination, Decision Analysis, Design, Organization Models, Planning, Process Models, Product Models, Risk Analysis, Simulation, VDT, Virtual Design Team. (2004). at <https://purl.stanford.edu/dv294pz2005>
Chachere, J. & Haymaker, J. Framework for Measuring Rationale Clarity of AEC Design Decisions. (2008). at <https://purl.stanford.edu/fm497vr4971>
Chachere, J., Kunz, J. & Levitt, R. Observation, Theory, and Simulation of Integrated Concurrent Engineering: Grounded Theoretical Factors that Enable Radical Project Acceleration. (2004). at <https://purl.stanford.edu/mt071hz7530>
Chachere, J., Kunz, J. & Levitt, R. The Role of Reduced Latency in Integrated Concurrent Engineering. (2009). at <https://purl.stanford.edu/bd089dx8723>
Chachere, J. Observation, Theory, and Simulation of Integrated Concurrent Engineering: Grounded Theoretical Factors and Risk Analysis Using Formal Models. (2009). at <https://purl.stanford.edu/bt714bw6192>
Clayton, M., Kunz, J. & Fischer, M. The Charrette Test Method. (1998). at <https://purl.stanford.edu/fg364rk9965>

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