Thesis recommendation for future researchers

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Thesis recommendation for future researchers

Recommendations for Future Research Based on this study, the following additional studies are recommended: The possibility of having different incidence angles, other than on the orthogonal principal axes, needs to be considered in design of buildings.

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For research purposes, the author believes that it is a must. For practical applications to the design of new buildings it is necessary, but a strong opposition from practicing engineers can be anticipated. The author found that the seismic performance factors are not well understood by a significant number of practicing engineers and researchers.

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It is true that there are engineers and researchers that understand very clearly these factors and their implications for the dynamic behavior of a building. But, these factors and the philosophy of Capacity Design need to be taught in a more comprehensive way. The teaching of these topics in a prescriptive style limit the future engineers of a sound understanding of these crucial concepts for the successful design of buildings in seismic zones.

Therefore, work need in this area on how to teach these concepts in a more clear and conceptually useful way 3. The eccentricity induced by planned or accidental differences in strength of the frames of a building has important effects on the maximum demands.

Arguably, the accidental eccentricity prescribed by the codes already includes these effects. Intriguingly, the USA and the Mexican design codes use different values of accidental eccentricity.


May be that in the USA the accidental asymmetries in strength are minimized, with respect to other countries, or may be this issue is not properly or completely addressed. A rational way to include these effects needs to be developed 4.

The mathematical model prepared for this research included the possibility of local plasticization of the beams and columns. To simplify the model, the plastic hinge concept was adopted.

Future work need to implement different methods to consider the non linear behavior of the building. The use of the plastic hinge, without any strength or stiffness degradations, creates doubts in the conclusions presented here.

Thus, the work done in this research should be expanded to confirm the generalization of the conclusions obtained here. In the few last years, the computer hardware capabilities has improved at a much faster pace than structural engineers have improved their computer algorithms and approaches to the solution of the complex problems in seismic design.

Engineers have to move faster to be able to use all the computer power available today yeardeveloping more ambitious algorithms to solve the most demanding problems they face. In this way, approaches of solution that seemed impossible some years ago, today they have become possible.

The current trend to emphasize approximate analysis methods in earthquake engineering practice misuses all the available computer power. The capacities of the structural analysis software available in the market, has been dictated more by the particular needs of the companies that develop this software, than by the particular needs of the practicing engineers, academics, and researchers.

Thus, engineers have become mostly users of black boxes.

Thesis recommendation for future researchers

Hopefully, everything done by the software is conceptually understood by the engineer, but experience has taught the author that there is a big difference between knowing concepts and mastering them.

Thus, engineers need to take the control of the development of the future software tools. Initiatives like the one implemented by the University.Find out how digital tools can help you: ———————————– Explore the literature (back to top) Here is a collection of digital tools that are designed to help researchers explore the millions of research articles available to this date.

Summary. Use your thesis to build career capital by (i) having someone from the organisation you’d like to work for as a thesis supervisor, (ii) using your connections to find organisational access (iii) finding a valuable topic that will attract a wide range of future employers.

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Collaborative filtering (CF) is a technique used by recommender systems. Collaborative filtering has two senses, a narrow one and a more general one.

In the newer, narrower sense, collaborative filtering is a method of making automatic predictions (filtering) about the interests of a user by collecting preferences or taste information from many users (collaborating).

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