Kaba, S. A.; Mahin, S. A.
Interactive Computer Analysis Methods for Predicting the Inelastic Cyclic Behaviour of Structural Sections.
National Science Foundation, Washington, DC.,
July 1983,
115 p.
Identifying Number(s): UCB/EERC-83/18
Keywords: Prestressed concrete; Mechanical hystereses; Earthquake engineering; Loads (Forces); Interactive systems; Reinforced concrete; Structural steels; Microcomputers; Computer aided analysis; Cyclic loads; Bending moments
Thewalt, C. R.; Mahin, S. A.
Hybrid Solution Techniques for Generalized Pseudodynamic Testing.
National Science Foundation, Washington, DC.,
July 1987,
145 p.
Identifying Number(s): UCB/EERC-87/09
Keywords: Reliability; Damping; Tests; Earthquake engineering; Dynamic tests; Computer applications; Equations of motion; Pseudodynamic testing; Displacement; Actuators; Control equipment
Austin, M. A.; Mahin, S. A.; Pister, K. S.
CSTRUCT: An Interactive Computer Environment for the Design and Analysis of Earthquake Resistant Steel Structures.
National Science Foundation, Washington, DC.,
September 1987,
103 p.
Identifying Number(s): UCB/EERC-87/13
Keywords: Steel structures; Earthquake resistant structures; Testing; CSTRUCT; Ultrix; Steel construction; Design; Computer aided design
Kawashima, K.; Mahin, S. A.
U.S.-Japan Workshop on Seismic Retrofit of Bridges (2nd). Held in Berkeley, California on January 20-21, 1994.
National Science Foundation, Arlington, VA.; Federal Highway Administration, Washington, DC.; National Inst. of Standards and Technology, Gaithersburg, MD.,
September 1997,
534 p.
Identifying Number(s): UCB/EERC-97/09
Keywords: San Fernando Valley; Earthquake engineering; Meetings; Seismic design; Richmond (California); Foundations; Bridge peirs; Japan; Bridges (Structures); United States; Retrofitting
Bertero, V. V.; Mahin, S. A.
Earthquake-Resistant Reinforced Concrete Building Construction. Volume II. Technical Papers.
National Science Foundation, Washington, DC. Applied Science and Research Applications.,
June 1978,
1004 p.
Keywords: Prestressed concrete; Ground motion; Buildings; Earthquake engineering; Earthquake resistant structures; Meetings; Foundations; Soil structure interactions; Reinforced concrete; Earth movements; Concrete construction; Construction management; Design; Dynamic structural analysis
Mahin, S. A.; Lin, J.
Construction of Inelastic Response Spectra for Single-Degree-of-Freedom Systems: Computer Program and Applications.
National Science Foundation, Washington, DC.,
June 1983,
98 p.
Identifying Number(s): UCB/EERC-83/17
Keywords: Dynamic response; One degree of freedom; Earthquake engineering; Guidelines; Earthquakes; Structural design; Computer applications; Structures; Mathematical models; Dynamic structural analysis
Conte, J. P.; Pister, K. S.; Mahin, S. A.
Influence of the Earthquake Ground Motion Process and Structural Properties on Response Characteristics of Simple Structures.
National Science Foundation, Washington, DC.,
July 1990,
362 p.
Identifying Number(s): UCB/EERC-90/09
Keywords: ; Damage; Response; Reliability; Earthquake resistant structures; Variability; Reinforcing steels; Monte Carlo Method; Earthquakes; Structural design; Stochastic processes; Reinforced concrete; Earth movements; Safety; Mathematical models; Elasticity; Seismic waves
Bollo, M. E.; Mahin, S. A.; Moehle, J. P.; Stephen, R. M.; Qi, X.
Observations and Implications of Tests on the Cypress Street Viaduct Test Structure.
National Science Foundation, Washington, DC.; California State Dept. of Transportation, Sacramento.,
December 1990,
291 p.
Identifying Number(s): UCB/EERC-90/21
Keywords: Earthquake damage; Highway improvements; Earthquake resistant structures; Dynamic tests; Earthquake engineering; Loads (Forces); Reinforcement (Structures); Test facilities; Loma Prieta Earthquake; Cypress Street Viaduct; Stiffness; Elevated highways; Seismic effects; Moments; California; Structural analysis; Highway design; Rehabilitation
Boroschek, R. L.; Mahin, S. A.
Investigation of the Seismic Response of a Lightly-Damped Torsionally-Coupled Building.
National Science Foundation, Washington, DC.,
December 1991,
277 p.
Identifying Number(s): UCB-EERC-91-18
Keywords: ; Earthquake damage; Dynamic response; Buildings; Steel structures; Earthquake engineering; Case studies; Loads (Forces); Structural vibration; Joints (Junctions); Vibration damping; Torsion; Seismic effects; Structural members; Displacement; Elastic analysis; California; Mathematical models; Structural analysis; Framed structures; Nonlinear systems
Lin, J.; Mahin, S. A.
Effect of Inelastic Behavior on the Analysis and Design of Earthquake Resistant Structures.
National Science Foundation, Washington, DC.,
June 1985,
164 p.
Identifying Number(s): UCB/EERC-85/08
Keywords: Damage; Ground motion; Damping; Elastic properties; Earthquake engineering; Earthquake resistant structures; Evaluation; Viscosity; Design