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8 Considerações Finais

8.3 Trabalhos Futuros

Como trabalhos futuros temos a aplicação das atividades sugeridas em turmas para vericar os níveis de interação e aprendizagem dos alunos. Criação de simulações de ce- nários que permitam exercitar melhor as habilidades e conhecimentos da área em sala de aula. Criação de um projeto interdisciplinar que envolva disciplina de programação, quali- dade, processo e Engenharia de Requisitos. Criação de um processo onde se possa envolver a indústria na academia. Além disso, fomentar discussões para explorar cada assunto do processo e atividades que exercitem outros conhecimentos, habilidades e atitudes de um prossional da área.

Referências

ABKE, J. et al. A new approach to collaborative learning in software engineering focussed on embedded systems. In: IEEE. Interactive Collaborative Learning (ICL), 2013 International Conference on. [S.l.], 2013. p. 610616.

ABRAN, A. et al. Guide to the software engineering body of knowledge-SWEBOK. [S.l.]: IEEE Press, 2001.

ACM. Computer science curricula 2013: Curriculum guidelines for undergraduate degree programs in computer science. [S.l.], 2013.

AL-ANI, B.; YUSOP, N. Role-playing, group work and other ambitious teaching methods in a large requirements engineering course. In: IEEE. Engineering of Computer-Based Systems, 2004. Proceedings. 11th IEEE International Conference and Workshop on the. [S.l.], 2004. p. 299306.

AMARAL, D. C. et al. Gestão de desenvolvimento de produtos: uma referência para a melhoria do processo. São Paulo: Saraiva, p. l9, 2006.

ANDRADE, R. d. C. et al. Uma proposta de metodologia para o ensino de engenharia de software. Fórum de Educação em Engenharia de Software, 2008.

ARAUJO, D. N. et al. Jogos educativos no ensino da engenharia de requisitos. IX Fórum de Educação em Engenharia De Software (FEES), Maringá, 2016.

AZEVEDO, R. et al. Melhoria de documentos de requisitos: um mapeamento sistemático da literatura. 2016.

BECK, K. et al. Manifesto for agile software development. 2001.

BENITTI, F. B. V. As a teacher, i want to know what to teach in requirements engineering so that professionals can be better prepared. In: ACM. Proceedings of the 31st Brazilian Symposium on Software Engineering. [S.l.], 2017. p. 318327.

BOEHM, B.; BASILI, V. Software defect top 10 lists. IEEE Computer, v. 34, n. 1, p. 26, 2001.

BOURQUE, P.; FAIRLEY, R. E. et al. Guide to the software engineering body of knowledge (SWEBOK (R)): Version 3.0. [S.l.]: IEEE Computer Society Press, 2014. BULLET, N. S. Essence and accidents of software engineering, fp brooks. IEEE Computer, v. 20, n. 4, p. 1019, 1987.

CALAZANS, A. et al. O perl do analista de requisitos de software: uma comparação entre a academia e o mercado de trabalho brasileiro. 05 2017.

CALAZANS, A. et al. O perl do analista de requisitos de software: uma comparação entre a academia e o mercado de trabalho brasileiro. p. 14, 05 2017.

CALLELE, D.; MAKAROFF, D. Teaching requirements engineering to an unsuspecting audience. In: ACM. ACM SIGCSE Bulletin. [S.l.], 2006. v. 38, n. 1, p. 433437.

CAO, L.; RAMESH, B. Agile requirements engineering practices: An empirical study. IEEE software, IEEE, v. 25, n. 1, 2008.

CHIAVEGATTI, N. C.; PETRI, G. Eareq-game: Um jogo educacional para o ensino de elicitação e análise de requisitos. Anais do EATI-Encontro Anual de Tecnologia da Informação e Semana Acadêmica de Tecnologia da Informação, Frederico Westphalen-RS, Brasil, Novembro, p. 1014, 2014.

COMMITTEE, I. C. S. S. E. S.; BOARD, I.-S. S. Ieee recommended practice for software requirements specications. In: INSTITUTE OF ELECTRICAL AND ELECTRONICS ENGINEERS. [S.l.], 1998.

COMPUTACAO, S. B. de. Curriculo de referencia da SBC para Cursos de Graduacao em Computacao, versao 1999. 1999.

CONNOLLY, T. M.; BEGG, C. E. A constructivist-based approach to teaching database analysis and design. Journal of Information Systems Education, EDSIG, v. 17, n. 1, p. 43, 2006.

COWAN, J. On Becoming and Innovative University Teacher, Buckingham: SRHE. [S.l.]: Open University Press, 1998.

CRESWELL, J. W. Projeto de pesquisa métodos qualitativo, quantitativo e misto. In: Projeto de pesquisa métodos qualitativo, quantitativo e misto. [S.l.]: Artmed, 2010. DAMIAN, D. et al. Teaching requirements engineering in global software development: a report on a three-university collaboration. In: Proc. 1st International Workshop on Requirements Engineering Education and Training (REET 2005). [S.l.: s.n.], 2005. DOLOG, P.; THOMSEN, L. L.; THOMSEN, B. Assessing problem-based learning in a software engineering curriculum using bloom?s taxonomy and the ieee software engineering body of knowledge. ACM Transactions on Computing Education (TOCE), ACM, v. 16, n. 3, p. 9, 2016.

ELECTRICAL, I. of; ENGINEERS, E. IEEE Recommended Practice for Software Design Descriptions: An American National Standard. [S.l.]: IEEE, 1987.

FERNANDEZ, D. M. et al. Naming the pain in requirements engineering. Empirical Software Engineering, Springer, v. 22, n. 5, p. 22982338, 2017.

FREEMAN, R. E.; REED, D. L. Stockholders and stakeholders: A new perspective on corporate governance. California management review, SAGE Publications Sage CA: Los Angeles, CA, v. 25, n. 3, p. 88106, 1983.

GARRISON, D. R.; KANUKA, H. Blended learning: Uncovering its transformative potential in higher education. The internet and higher education, Elsevier, v. 7, n. 2, p. 95105, 2004.

GAUSE, D. C.; WEINBERG, G. M. Exploring requirements: quality before design. [S.l.]: Dorset House Pub. New York, 1989.

GIMENES, I. M.; BARROCA, L.; BARBOSA, E. F. The future of human resources qualications in software engineering-meeting demands from industry and beneting from educational and technological advances. In: IEEE. Software Engineering (SBES), 2012 26th Brazilian Symposium on. [S.l.], 2012. p. 181185.

GRBAC, T. G.; CAR, š.; VUKOVI‚, M. Requirements and architecture modeling in software engineering courses. In: ACM. Proceedings of the 2015 European Conference on Software Architecture Workshops. [S.l.], 2015. p. 36.

GUIMARÃES, J. A. C. Elaboração de ementas de atos normativos: elementos de análise documentária como subsídio teórico à técnica legislativa. Informação jurídica: teoria e prática. Brasília: Thesaurus, p. 932, 2004.

HENRIQUE, M. S. Educatalog4re: um catálogo de requisitos para auxiliar o desenvolvimento softwares educacionais. Universidade Federal de Pernambuco, 2016. HOFNIAI, H. F.; LEHNER, F. as a success factor in. Software Management, Wiley-IEEE Computer Society Press, v. 16, p. 157, 2006.

IEEE. Standard g lossary of softwareengineering terminology. IEEE S o f t w are E n g ineerin g S tandards & oll ecti o n. I EEE, p. 61012, 1990.

INAYAT, I. et al. A systematic literature review on agile requirements engineering practices and challenges. Computers in human behavior, Elsevier, v. 51, p. 915929, 2015. JACKSON, C. Simulation driven design benchmark report. Boston, MA, USA: Aberdeen Group, 2006.

JANIS, I. L.; KING, B. T. The inuence of role playing on opinion change. The journal of abnormal and social psychology, American Psychological Association, v. 49, n. 2, p. 211, 1954.

JOHNSON, J. Chaos summary. The Standish Group Report, 2009.

KARVONEN, T. et al. Systematic literature review on the impacts of agile release engineering practices. Information and Software Technology, Elsevier, v. 86, p. 87100, 2017.

KEELE, S. et al. Guidelines for performing systematic literature reviews in software engineering. In: Technical report, Ver. 2.3 EBSE Technical Report. EBSE. [S.l.]: sn, 2007. KHAN, H. H.; MALIK, M. N. Software standards and software failures: A review with the perspective of varying situational contexts. IEEE Access, IEEE, v. 5, p. 1750117513, 2017.

KITCHENHAM, B. et al. Systematic literature reviews in software engineeringa systematic literature review. Information and software technology, Elsevier, v. 51, n. 1, p. 715, 2009.

KNAUSS, E.; SCHNEIDER, K.; STAPEL, K. A game for taking requirements engineering more seriously. In: IEEE. Multimedia and Enjoyable Requirements Engineering-Beyond Mere Descriptions and with More Fun and Games, 2008. MERE'08. Third International Workshop on. [S.l.], 2008. p. 2226.

LAPLANTE, P. A. Requirements engineering for software and systems. [S.l.]: CRC Press, 2013.

LEAL, D. T. B.; JR, E. C. A aula expositiva no ensino da contabilidade. Contabilidade vista & revista, Universidade Federal de Minas Gerais, v. 17, n. 3, 2006.

LIANG, P.; GRAAF, O. D. Experiences of using role playing andwiki in requirements engineering course projects. In: IEEE. Requirements Engineering Education and Training (REET), 2010 5th International Workshop on. [S.l.], 2010. p. 16.

LIMA, T. et al. Ubire: A game for teaching requirements in the context of ubiquitous systems. In: IEEE. Informatica (CLEI), 2012 XXXVIII Conferencia Latinoamericana En. [S.l.], 2012. p. 110.

LOPES, L. T.; AUDY, J. L. N. Em busca de um modelo de referência para engenharia de requisitos em ambientes de desenvolvimento distribuído de software. In: Proceedings of 6th International Workshop on Requirements Engineering, Piracicaba, Brasil. [S.l.: s.n.], 2003. p. 7892.

MADHAVJI, N. H.; MILLER, J. Investigation-based requirements engineering education. In: Proc. 1st International Workshop on Requirements Engineering Education and Training (REET 2005). [S.l.: s.n.], 2005.

MANIFESTO, C. Think big, act small. The Standish Group International Inc, v. 176, 2013.

MARÇAL, E. et al. Da elicitação de requisitos ao desenvolvimento de aplicações de mobile learning em matemática. In: Brazilian Symposium on Computers in Education (Simpósio Brasileiro de Informática na Educação-SBIE). [S.l.: s.n.], 2010. v. 1, n. 1. MARSICANO, G. et al. An integrated approach to the requirements engineering and process modelling teaching. In: IEEE. Software Engineering Education and Training (CSEET), 2016 IEEE 29th International Conference on. [S.l.], 2016. p. 166174. MEC. Diretrizes Curriculares para os Cursos de Engenharia. 2016. , Ministério da Educação, Secretaria de Ensino Superior, Departamento de Políticas de Ensino Superior, Coordenação das Comissões de Especialistas, Comissão de Especialistas de Ensino de Engenharia, Disponível em: http:// www.mec.gov.br.

MEC, P. E. Disponível em. Acesso em, v. 7, 2015.

MINOR, O.; ARMAREGO, J. Requirements engineering: a close look at industry needs and a model curricula. Australasian Journal of Information Systems, v. 13, n. 1, 2005. MINOR, O.; ARMAREGO, J. Requirements engineering: a close look at industry needs and a model curricula. Australasian Journal of Information Systems, v. 13, n. 1, 2005.

NAKAMURA, T.; KAI, U.; TACHIKAWA, Y. Requirements engineering education using expert system and role-play training. In: IEEE. Teaching, Assessment and Learning (TALE), 2014 International Conference on. [S.l.], 2014. p. 375382.

NAKAMURA, T.; TAKASHIMA, A.; MIKAMI, A. The use of agents to represent learners in role-play training. In: IEEE. Education Engineering (EDUCON), 2010 IEEE. [S.l.], 2010. p. 185190.

NERICI, I. Didáctica Geral Dinâmica (10a edição). [S.l.]: São Paulo. Brasil: Editora

Atlas SA, 1987.

NETO, G. Gomes da C. Estudos qualitativos para elicitação de requisitos: uma abordagem que integra análise sócio-cultural e modelagem organizacional. Universidade Federal de Pernambuco, 2008.

NIAZI, M.; SHASTRY, S. Role of requirements engineering in software development process: an empirical study. In: IEEE. Multi Topic Conference, 2003. INMIC 2003. 7th International. [S.l.], 2003. p. 402407.

NUSEIBEH, B.; EASTERBROOK, S. Requirements engineering: a roadmap. In: ACM. Proceedings of the Conference on the Future of Software Engineering. [S.l.], 2000. p. 3546.

OKTABA, H. et al. Use of the essence and kuali-beh to structure software engineering courses. In: IEEE. Software Engineering Research and Innovation (CONISOFT), 2016 4th International Conference in. [S.l.], 2016. p. 4752.

OLIVEIRA, A. d. P. A. et al. The monopoly game to teach eri* c-intentional requirements engineering. In: iStarT@ CAiSE. [S.l.: s.n.], 2015. p. 4954.

PÁDUA, W. Engenharia de softwarefundamentos. Métodos e Padrões, Rio de, 2003. PAETSCH, F.; EBERLEIN, A.; MAURER, F. Requirements engineering and agile software development. In: IEEE. Enabling Technologies: Infrastructure for Collaborative Enterprises, 2003. WET ICE 2003. Proceedings. Twelfth IEEE International Workshops on. [S.l.], 2003. p. 308313.

PALDÊS, V. D. et al. A qualicação prossional do engenheiro de requisitos no brasil. In: THE PROFESSIONAL QUALIFICATION OF THE REQUIREMENTS ENGINEER IN BRAZIL). ANAIS DO WER17-WORKSHOP EM ENGENHARIA DE REQUISITOS, BUENOS AIRES, ARGENTINA. [S.l.], 2017.

PEIXOTO, D. C. et al. An overview of the main design characteristics of simulation games in software engineering education. In: IEEE. Software Engineering Education and Training (CSEE&T), 2011 24th IEEE-CS Conference on. [S.l.], 2011. p. 101110.

PENZENSTADLER, B. et al. Using non-prot partners to engage students in re. In: REET. [S.l.: s.n.], 2014. p. 110.

PFLEEGER, S. L.; ATLEE, J. M. Software engineering: theory and practice. [S.l.]: Pearson Education India, 2001.

PINHEIRO, B.; GONÇALVES, M. O processo ensino-aprendizagem. Rio de Janeiro: Editora SENAC Nacional, 2001.

PORTUGAL, R. L. Q. et al. Facing the challenges of teaching requirements engineering. In: IEEE. Software Engineering Companion (ICSE-C), IEEE/ACM International Conference on. [S.l.], 2016. p. 461470.

PORTUGAL, R. L. Q. et al. Facing the challenges of teaching requirements engineering. In: IEEE. Software Engineering Companion (ICSE-C), IEEE/ACM International Conference on. [S.l.], 2016. p. 461470.

PRESSMAN, R. S. Engenharia de software: uma abordagem prossional. 7a edição. Ed:

McGraw Hill, 2011.

PRINCE, M. J.; FELDER, R. M. Inductive teaching and learning methods: Denitions, comparisons, and research bases. Journal of engineering education, Wiley Online Library, v. 95, n. 2, p. 123138, 2006.

PRODANOV, C. C.; FREITAS, E. C. de. Metodologia do Trabalho Cientíco: Métodos e Técnicas da Pesquisa e do Trabalho Acadêmico-2a Edição. [S.l.]: Editora Feevale, 2013.

RALLIS, S. F.; ROSSMAN, G. B. Learning in the eld: An introduction to qualitative research. Learning in the eld: an introduction to qualitative research, Sage Thousand Oaks, 1998.

RAMESH, B.; CAO, L.; BASKERVILLE, R. Agile requirements engineering practices and challenges: an empirical study. Information Systems Journal, Wiley Online Library, v. 20, n. 5, p. 449480, 2010.

REGEV, G.; GAUSE, D. C.; WEGMANN, A. Requirements engineering education in the 21st century, an experiential learning approach. In: IEEE. International Requirements Engineering, 2008. RE'08. 16th IEEE. [S.l.], 2008. p. 8594.

REUTER, R.; BESLMEISL, M.; MOTTOK, J. Work in progress: Teaching-obstacles in higher software engineering education. In: 2017 IEEE Global Engineering Education Conference (EDUCON). [S.l.: s.n.], 2017. p. 16311635.

ROBERTSON, J.; ROBERTSON, S. Vollständige Systemanalyse. [S.l.]: Hanser, 1996. ROLDÃO, M. d. C.; CURRICULAR, G. Fundamentos e práticas. Departamento de Educação Básica, Lisboa, DEB/Ministério, 1999.

RUDIO, F. V. Introdução ao projeto de pesquisa cientíca. [S.l.]: Vozes, 2010.

SCEPANOVIC, S.; BEUS-DUKIC, L. Teaching requirements engineering: Euroweb experience. In: ACM. Proceedings of the 2015 European Conference on Software Architecture Workshops. [S.l.], 2015. p. 38.

SCHÖN, E.-M.; THOMASCHEWSKI, J.; ESCALONA, M. J. Agile requirements engineering: a systematic literature review. Computer Standards & Interfaces, Elsevier, v. 49, p. 7991, 2017.

SCHWABER, K.; BEEDLE, M. Agile software development with Scrum. [S.l.]: Prentice Hall Upper Saddle River, 2002.

SEDELMAIER, Y.; LANDES, D. Using business process models to foster competencies in requirements engineering. In: IEEE. Software Engineering Education and Training (CSEE&T), 2014 IEEE 27th Conference on. [S.l.], 2014. p. 1322.

SEDELMAIER, Y.; LANDES, D. Active and inductive learning in software engineering education. In: IEEE PRESS. Proceedings of the 37th International Conference on Software Engineering-Volume 2. [S.l.], 2015. p. 418427.

SEDELMAIER, Y.; LANDES, D. Experiences in teaching and learning requirements engineering on a sound didactical basis. In: ACM. Proceedings of the 2017 ACM Conference on Innovation and Technology in Computer Science Education. [S.l.], 2017. p. 116121.

SEDELMAIER, Y.; LANDES, D. Experiences in teaching and learning requirements engineering on a sound didactical basis. In: ACM. Proceedings of the 2017 ACM Conference on Innovation and Technology in Computer Science Education. [S.l.], 2017. p. 116121.

SEEK. 2003. The body of Software Engineering Education Knowledge. Disponível em: http://www.acm.org/education/curricula.html.

SMITH, R.; GOTEL, O. Re-o-poly: a customizable game to introduce and reinforce requirements engineering good practices. Departament of Computer Science, Pace University, New York, 2008.

SOMMERVILLE, I. Software engineering. international computer science series. ed: Addison Wesley, 2004.

SOMMERVILLE, I.; RANSOM, J. An empirical study of industrial requirements engineering process assessment and improvement. ACM Transactions on Software Engineering and Methodology (TOSEM), ACM, v. 14, n. 1, p. 85117, 2005.

SOSKA, A.; SCHROLL-DECKER, I.; MOTTOK, J. Implementation of practical exercises in software engineering education to improve the acquirement of functional and non-functional competences: A eld report about project-based learning in software engineering. In: IEEE. Interactive Collaborative Learning (ICL), 2014 International Conference on. [S.l.], 2014. p. 338345.

SOWMYA, B.; HIRIYANNAIAH, S.; SRINIVASA, K. A case study based software engineering education using open source tools. In: QuASoQ/WAWSE/CMCE@ APSEC. [S.l.: s.n.], 2015. p. 7988.

SUCUPIRA, P. Cursos recomendados e reconhecidos. Brasília, DF: Capes, 2017.

SVENSSON, R. B.; REGNELL, B. Is role playing in requirements engineering education increasing learning outcome? Requirements Engineering, Springer, v. 22, n. 4, p. 475489, 2017.

TACHIKAWA, Y. et al. An analysis of the relation between the behavior of a learner and acquired skill level in role-play training. In: 6th International Conference on Project Management. [S.l.: s.n.], 2012. p. 113120.

TAKAHASHI, R. T.; FERNANDES, M. d. F. P. Plano de aula: conceitos e metodologia. Acta Paul. Enf, v. 17, n. 1, p. 114118, 2004.

THIRY, M.; ZOUCAS, A.; GONÇALVES, R. Q. Promovendo a aprendizagem de engenharia de requisitos de software através de um jogo educativo. In: Brazilian Symposium on Computers in Education (Simpósio Brasileiro de Informática na Educação-SBIE). [S.l.: s.n.], 2010. v. 1, n. 1.

VARA, J. L. de la et al. Trends and needs in requirements engineering research in ibero-america: Insights from a panel. In: Anais do WER16-Workshop em Engenharia de Requisitos, Quito, Ecuador. [S.l.: s.n.], 2016.

VASCONCELLOS, C. d. S. Planejamento: plano de ensino-aprendizagem e projeto educativo. São Paulo: Libertad, v. 4, 1995.

VILELA, J. et al. Integration between requirements engineering and safety analysis: A systematic literature review. Journal of Systems and Software, Elsevier, v. 125, p. 6892, 2017.

WIEGERS, K.; BEATTY, J. Software requirements. [S.l.]: Pearson Education, 2013. ZAVE, P. Classication of research eorts in requirements engineering. ACM Computing Surveys (CSUR), ACM, v. 29, n. 4, p. 315321, 1997.

ZORZO A. F.; NUNES, D. M. E. S. I. L. J. A. R. M. C. R. M. S. Referenciais de formação para os cursos de graduação em computação. Sociedade Brasileira de Computação (SBC), p. 153, 2017. ISBN 978-85-7669-424-3.

ZOWGHI, D.; PARYANI, S. Teaching requirements engineering through role playing: Lessons learnt. In: IEEE. Requirements Engineering Conference, 2003. Proceedings. 11th IEEE International. [S.l.], 2003. p. 233241.

APÊNDICE A -- Referências da Revisão