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Found 375 results
[ Author(Desc)] Title Type Year
A B C D E F G H I J K L M N O P Q R S T U V W X Y Z 
,. Communicating Design Processes Effectively and Efficiently. (2011). at <https://purl.stanford.edu/dg148zm3811>
A
Aalami, F. B., Kunz, J. & Fischer, M. Model-Based Mechanisms for Automated Activity Sequencing. (1998). at <https://purl.stanford.edu/rk265xd6193>
Aalami, F. B., Levitt, R. E. & Fischer, M. A Customizable Representation for Construction Method Models. (1998). at <https://purl.stanford.edu/fm706dy0603>
Aalami, F. B., Fischer, M. & Kunz, J. AEC 4D Production Model: Definition and Automated Generation. (1998). at <https://purl.stanford.edu/yt829pn1767>
Abdalla, J. A. & Powell, G. H. Versions and Alternatives of Structural Engineering Design Objects. (1991). at <https://purl.stanford.edu/xz876sb9268>
Abraham, K., Flager, F., Macedo, J., Gerber, D. & Lepech, M. Enhancing Pre-Construction Decision-Making on Sustainable Commercial Building Projects. (2014). at <https://purl.stanford.edu/qn758pg5219>
Abram, T., Kunz, J., O’Donnell, J. & Garr, M. Energy Performance Analyses of a Santa Clara County Facility by CEE243 Student Groups. (2011). at <https://purl.stanford.edu/pn384yb9843>
Ackerman-Greenberg, A., Werner, G., Yee, A., Farr, J. & Vanderboll, S. California High-Speed Rail Project: A Study of the Palo Alto Section. (2010). at <https://purl.stanford.edu/gz429pj4301>
Akbaş, R. Geometry-Based Modeling and Simulation of Construction Processes. (2004). at <https://purl.stanford.edu/dc493cj2064>
Akinci, B., Fischer, M., Kunz, J. & Levitt, R. E. Automated Generation of Work Spaces Required by Construction Activities. (2000). at <https://purl.stanford.edu/sv746wy2861>
Akinci, B., Fischer, M., Kunz, J. & Levitt, R. E. Representing Work Spaces Generically in Construction Method Models. (2000). at <https://purl.stanford.edu/qm792vx3814>
Akinci, B., Fischer, M., Levitt, R. E. & Carlson, R. Formalization and Automation of Time-Space Conflict Analysis. (2000). at <https://purl.stanford.edu/cx388px0274>
Aoki, T. Measurement Planning System for Information Integrated Construction. (1991). at <https://purl.stanford.edu/cz191dw5484>
Arnold, J. Andrew & Teicholz, P. A Study of the Life Cycle Requirements for an Information Model of the Components that are Incorporated in Process Facilities. (1996). at <https://purl.stanford.edu/nj454tk3815>
Axworthy, A. T. A Knowledge-Based Model of Time-Cost Tradeoff Analysis for Construction Schedules. (1990). at <https://purl.stanford.edu/ry476dw6976>
B
Barg, S., Flager, F. & Fischer, M. Exploring Methods to Quantitatively Compare Optimization Techniques for Building Envelope Design. (2019). at <https://purl.stanford.edu/kt315yx6941>
Barg, S., Flager, F. & Fischer, M. An Analytical Method to Estimate the Total Installed Cost of Steel Frames during Early Design. (2017). at <https://purl.stanford.edu/yb503ws4475>
Barraquand, J. & Latombe, J. - C. Controllability of Mobile Robots with Kinematic Constraints. (1992). at <https://purl.stanford.edu/sr312fw1624>
Barraquand, J. & Latombe, J. - C. On Nonholonomic Mobile Robots and Optimal Maneuvering. (1989). at <https://purl.stanford.edu/ny498kn3429>
Barrón, A. & Fischer, M. Potential Benefits of Internet-Based Project Control Systems: A Study on Time Card Processing. (2001). at <https://purl.stanford.edu/qv736hg5369>
Barrón, A. & Fischer, M. Potential Benefits of Internet-Based Project Control Systems: A Study On Monthly Progress Billings Processing. (2001). at <https://purl.stanford.edu/dz310yj8617>
Barrón, A. & Fischer, M. Potential Benefits of Internet-Based Project Control Systems: A Study on Change Order Processing. (2001). at <https://purl.stanford.edu/hg452kh4571>
Becker, A., Inoue, S., Fischer, M. & Schwegler, B. Considering Climate Change: A Survey of Global Seaport Administrators. (2011). at <https://purl.stanford.edu/rp372gr2535>
Behrman, W. Best Practices for the Development and Use of XML Data Interchange Standards. (2002). at <https://purl.stanford.edu/dc516zk9688>
Berard, O. & Fischer, M. A Study of Handling Design Information in Construction Companies. (2011). at <https://purl.stanford.edu/fn366by5583>

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