Design for Sustainable Systems

The course presents analytical and methodological background for designing solutions to complex demands related to sustainability. State of the art design for sustainability frameworks are discussed, Life Cycle Thinking and Management, Systems thinking and design strategies from  product focused approaches to socio-technical system innovative projects.

References:

1. Bouchery, Yann, Charles J. Corbett, Jan C. Fransoo, and Tarkan Tan, eds. 2017. Sustainable Supply Chains: A Research-Based Textbook on Operations and Strategy.

2. Cordella, Mauro and Renata Kaps. 2018. Designing Sustainable Technologies, Products and Policies. edited by E. Benetto, K. Gericke, and M. Guiton. Cham: Springer Nature.

3. Vezzoli, Carlo, Fabrizio Ceschin, Lilac Osanjo, Mugendi K. M’Rithaa, Richie Moalosi, Venny Nakazibwe, and Jan Carel Diehl. 2018. Designing Sustainable Energy for All. Cham: Springer Nature

4. Hauschild, Michael Z., Stig Irving Olsen, and Ralph K. Rosenbaum, eds. 2018. Life Cycle Assessment Theory and Practice. Cham: Springer Nature.

5. Hernandez, Ariel Macaspac. 2021. Taming the Big Green Elephant. Setting in Motion the Transformation Towards Sustainability. Cham: Springer Nature.

6. Sonnemann, Guido and Manuele Margni, eds. 2017. Life Cycle Management. Cham: Springer Nature.

7. Stark, Rainer, Guenther Seliger, and Jérémy Bonvoisin. 2012. Sustainable Manufacturing - Challenges, Solutions and Implementation Perspectives. Cham: Springer Nature.



Filosofia da ciência matemática. Modelos e cognição. Matemática e questões sócio-cultural e ambiental: história; resolução de problemas; Etnomatemática; tecnologias de informação e comunicação. Modelagem e modelo: origem, concepção e método. Modelagem na Educação: método de ensino e pesquisa. Campo de Pesquisa da Modelagem e Etnomatemática na Educação: aplicada e teórica, numa perspectiva transdisciplinar.