Science diplomacy and policy can support collaborative national and international science for advancing knowledge with societal impact in fields such as climate, space, medicine, and the environment., Scientific advances made possible by the basic and applied research carried out by government agencies, universities, and nongovernmental organizations create opportunities and challenges with growing impact on policy decisions. Developing structures that produce the best science information to policy makers is becoming more critical in an ever-changing world. This three-volume set presented by prominent figures from the disciplines of science, engineering, technology, and diplomacy includes their perspectives on potential solutions to opportunities 21st-century scientists, engineers, and diplomats face in the future: To shed light and interface science, technology, and engineering with the realm of policy; To provide a vision for the future by identifying obstacles and opportunities while focusing on several key issues.
Science diplomacy and policy can support collaborative national and international science for advancing knowledge with societal impact in fields such as climate, space, medicine, and the environment., Scientific advances made possible by the basic and applied research carried out by government agencies, universities, and nongovernmental organizations create opportunities and challenges with growing impact on policy decisions. Developing structures that produce the best science information to policy makers is becoming more critical in an ever-changing world. This three-volume set presented by prominent figures from the disciplines of science, engineering, technology, and diplomacy includes their perspectives on potential solutions to opportunities 21st-century scientists, engineers, and diplomats face in the future: To shed light and interface science, technology, and engineering with the realm of policy; To provide a vision for the future by identifying obstacles and opportunities while focusing on several key issues.
Science diplomacy and policy can support collaborative national and international science for advancing knowledge with societal impact in fields such as climate, space, medicine, and the environment., Scientific advances made possible by the basic and applied research carried out by government agencies, universities, and nongovernmental organizations create opportunities and challenges with growing impact on policy decisions. Developing structures that produce the best science information to policy makers is becoming more critical in an ever-changing world. This three-volume set presented by prominent figures from the disciplines of science, engineering, technology, and diplomacy includes their perspectives on potential solutions to opportunities 21st-century scientists, engineers, and diplomats face in the future: To shed light and interface science, technology, and engineering with the realm of policy; To provide a vision for the future by identifying obstacles and opportunities while focusing on several key issues.
Seismic assessment and earthquake-resistant design are essential applications of earthquake engineering for achieving seismic safety for buildings, bridges, infrastructure, and many other components of the built environment. The Endurance Time Method (ETM) is used for seismic analysis of simple and complex structural systems and civil engineering infrastructure as well as producing optimal and cost-effective structural and detail designs. ETM is a relatively new approach to seismic assessment and design of structures. It has developed into a versatile tool in the field, and its practical applications are expected to increase greatly in the near future.
A new approach to seismic assessment of structures called endurance time method (ETM) is developed. ETM is a dynamic analysis procedure in which intensifying dynamic excitations are used as the loading function. ETM provides many unique benefits in seismic assessment and design of structures and is a response history-based procedure. ETM considerably reduces the computational effort needed in typical response history analyses. Conceptual simplicity makes ETM a great tool for preliminary response history analysis of almost any dynamic structural system. Most important areas of application of ETM are in the fields of seismic design optimization, value-based seismic design, and experimental studies. This book is aimed to serve as a coherent source of information for students, engineers, and researchers who want to familiarize themselves with the concepts and put the concepts into practice.
A new approach to seismic assessment of structures called endurance time method (ETM) is developed. ETM is a dynamic analysis procedure in which intensifying dynamic excitations are used as the loading function. ETM provides many unique benefits in seismic assessment and design of structures and is a response history-based procedure. ETM considerably reduces the computational effort needed in typical response history analyses. Conceptual simplicity makes ETM a great tool for preliminary response history analysis of almost any dynamic structural system. Most important areas of application of ETM are in the fields of seismic design optimization, value-based seismic design, and experimental studies. This book is aimed to serve as a coherent source of information for students, engineers, and researchers who want to familiarize themselves with the concepts and put the concepts into practice.
This will help us customize your experience to showcase the most relevant content to your age group
Please select from below
Login
Not registered?
Sign up
Already registered?
Success – Your message will goes here
We'd love to hear from you!
Thank you for visiting our website. Would you like to provide feedback on how we could improve your experience?
This site does not use any third party cookies with one exception — it uses cookies from Google to deliver its services and to analyze traffic.Learn More.