Výsledky vyhledávání - acm: c.: computer systems organizacia/c.4: performance of systems/c.4.0: design studies

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    Thesis Advisors: Vieira, Flávio Henrique Teles, Carvalho, Cedric Luiz de, Brito, Leonardo da Cunha

    Zdroj: Biblioteca Digital de Teses e Dissertações da UFGUniversidade Federal de GoiásUFG.

    Popis souboru: application/pdf

    Relation: -5088589215393046129; 600; -7705723421721944646; -4730207349379833806; 2075167498588264571; AQUINO, V. A.; BARRIA, J. A. Multiresolution fir neural-network-based learning algorithm applied to network traffic prediction. IEEE Transactions on Systems, v. 36, n. 2, p. 208–220, 2006. Citado na p´agina 69. BEZDEK, J. Fuzzy models What are they, and why? Fuzzy Systems, IEEE Transactions on, v. 1, n. 1, p. 1–6, 1993. ISSN 1063-6706. Citado 2 vezes nas p´aginas 17 e 55. CHEN, B.; LIU, X.; TONG, S. Adaptive Fuzzy Output Tracking Control of MIMO Nonlinear Uncertain Systems. Fuzzy Systems, IEEE Transactions on, v. 15, n. 2, p. 287–300, April 2007. Citado na p´agina 78. CHEN, B.-S.; PENG, S.-C.; WANG, K.-C. Traffic modeling, prediction, and congestion control for high-speed networks: a fuzzy ar approach. Fuzzy Systems, IEEE Transactions on, v. 8, n. 5, p. 491–508, 2000. Citado na p´agina 55. CHEN, T. M.; LIU, S. S.; SAMALAM, V. K. The Available Bit Rate Service for Data in ATM Networks. Comm. Mag., v. 34, n. 5, p. 56–58, 63–71, maio 1996. Citado 3 vezes nas p´aginas 79, 80 e 89. CHUI, C. K. An Introduction to Wavelets. San Diego, CA, USA: Academic Press Professional, Inc., 1992. ISBN 0-12-174584-8. Citado na p´agina 22. DANG, T. D.; MOLNAR, S.; MARICZA, I. Capturing the complete characteristics of multifractal network traffic. GLOBECOM, Taipei, Taiwan, Novembro 2002. Citado 2 vezes nas p´aginas 21 e 83. DANG, T. D.; MOLNAR, S.; MARICZA, I. Capturing the Complete Multifractal Characteristics of Network Traffic. In: In Proc., GLOBECOM 2002. [S.l.: s.n.], 2002. Citado na p´agina 21. DANG, T. D.; MOLNAR, S.; MARICZA, I. Queuing performance estimation for general multifractal traffic. Int. J. Commun. Syst., v. 16, n. 2, p. 117–136, 2003. Citado 4 vezes nas p´aginas 19, 21, 22 e 28. DEC. Digital Equipament Corporation Traces. 1995. Dispon´ıvel em: . Citado 2 vezes nas p´aginas 57 e 127. DINIZ, P. S. R. Adaptive Filtering: Algorithms and Practical Implementation. [S.l.]: Springer, 2008. Citado 3 vezes nas p´aginas 45, 49 e 54. DITZE, M.; JAHNICH, I. Towards end-to-end QoS in service oriented architectures. In: Industrial Informatics, 2005. INDIN ’05. 2005 3rd IEEE International Conference on. [S.l.: s.n.], 2005. p. 92–97. Citado na p´agina 17. DURRESI, A.; SRIDHARAN, M.; JAIN, R. Congestion control using adaptive multilevel early congestion notification. International Journal of High performance and Networking, v. 4, n. 5, 2006. Citado na p´agina 78. EHLERS, R. S. [S.l.]: Departamento de Estat´ısticas UFPR, 2005. Citado na p´agina 31. FARHANG-BOROUJENY, B. Adaptive Filters: Theory and Applications. [S.l.]: John Wiley & Sons, 1999. Citado 2 vezes nas p´aginas 60 e 90. FELDMANN, A.; GILBERT, A. C.; WILLINGER, W. Data networks as cascades: investigating the multifractal nature of Internet WAN traffic. SIGCOMM Comput. Commun. Rev., ACM, New York, NY, USA, v. 28, n. 4, p. 42–55, 1998. Citado na p´agina 19. GILL, P. E.; MURRAY, W.; WRIGHT, M. H. Practical Optimization. [S.l.]: Emerald Group Publishing Limited, 1982. Citado na p´agina 48. GONCALVES, B. H. P.; VIEIRA, F. H. T.; COSTA, V. H. T. Modelagem Multifractal BMWM Adaptiva para Tr´afego de Redes de Computadores. In: X Encontro Anual de Computa¸c˜ao - EnAComp 2013. [S.l.: s.n.], 2013. p. 383–390. Citado 6 vezes nas p´aginas 24, 25, 82, 83, 85 e 86. GRIPENBERG, G.; NORROS, I. On the prediction of fractional brownian motion. Journal of Applied Probability, v. 33, p. 400–410, 1996. Citado na p´agina 56. GULER, O. Foundations of Optimization (Graduate Texts in Mathematics, Vol. 258). [S.l.]: Springer, 2010. Citado na p´agina 48. HABIB, I. W.; SAADAWI, T. N. Access flow control algorithms in broadband networks. Computer Communications, v. 15, n. 5, p. 326–332, 1992. Citado 2 vezes nas p´aginas 79 e 89. HATANO, T.; SHIGENO, H.; OKADA, K. TCP-friendly Congestion Control for HighSpeed Network. In: Applications and the Internet, 2007. SAINT 2007. International Symposium on. [S.l.: s.n.], 2007. p. 10–10. Citado na p´agina 17. HAYKIN, S. S. Modern filters. [S.l.]: Macmillan New York, 1989. Citado na p´agina 57. HIRCHOREN, G.; ARANTES, D. Predictors for the discrete time fractional gaussian processes. In: Telecommunications Symposium, 1998. ITS ’98 Proceedings. SBT/IEEE International. [S.l.: s.n.], 1998. p. 49–53 vol.1. Citado na p´agina 56. HU, Q.; PETR, D. A predictive self-tuning fuzzy-logic feedback rate controller. Networking, IEEE/ACM Transactions on, v. 8, n. 6, p. 697–709, Dec 2000. Citado na p´agina 78. INTEL. Intel Pentium Processor T4500. 2014. Dispon´ıvel em: . Citado na p´agina 58. JACOBSON, V. Congestion Avoidance and Control. SIGCOMM Comput. Commun. Rev., v. 25, n. 1, p. 157–187, jan. 1995. ISSN 0146-4833. Citado na p´agina 81. JANTZEN, J. Foundations of Fuzzy Control. [S.l.]: John Wiley & Sons, 2007. Citado na p´agina 38. JUSAK, J.; HARRIS, R. Study of UDP-based Internet traffic: Long-range dependence characteristics. In: Australasian Telecommunication Networks and Applications Conference (ATNAC), 2011. [S.l.: s.n.], 2011. p. 1–7. ISSN Pending. Citado na p´agina 17. KARNIK, A.; KUMAR, A. Performance of TCP Congestion Control with Explicit Rate Feedback. IEEE/ACM Trans. Netw., IEEE Press, v. 13, n. 1, p. 108–120, fev. 2005. ISSN 1063-6692. Citado 2 vezes nas p´aginas 79 e 89. KIM, E. et al. A new approach to fuzzy modeling. Fuzzy Systems, IEEE Transactions on, v. 5, n. 3, p. 328–337, Aug 1997. Citado na p´agina 55. KIM, S. et al. Dataset of BitTorrent traffic on Korea Telecom’s mobile WiMAX network. 2012. Dispon´ıvel em: . Citado 4 vezes nas p´aginas 22, 88, 129 e 131. KUO, S. M.; LEE, B. H.; TIAN, W. Real-Time Digital Signal Processing: Fundamentals, Implementations and Applications. [S.l.]: John Wiley & Sons, 2013. Citado na p´agina 50. LEE, I. W. C.; FAPOJUWO, A. O. Stochastic Processes for Computer Network Traffic Modeling. Comput. Commun., Elsevier Science Publishers B. V., v. 29, n. 1, p. 1–23, dez. 2005. ISSN 0140-3664. Citado na p´agina 78. LEE, K. Y. Complex fuzzy adaptive filter with LMS algorithm. Signal Processing, IEEE Transactions on, v. 44, n. 2, p. 424–427, 1996. ISSN 1053-587X. Citado na p´agina 57. LEE, T.-J.; VECIANA, G. de. Model and performance evaluation for multiservice network link supporting ABR and CBR services. Communications Letters, IEEE, v. 4, n. 11, p. 375–377, Nov 2000. Citado na p´agina 80. LI, H.; CHEN, C. P.; HUANG, H.-P. Fuzzy Neural Intelligent Systems: Mathematical Foundation and the Applications in Engineering. [S.l.]: CRC Press, 2000. Citado na p´agina 35. LILLY, J. H. Fuzzy control and identification. [S.l.]: John Wiley & Sons, 2010. Citado na p´agina 40. LIU, H.-H.; HSU, P.-L. Design and simulation of adaptive fuzzy control on the traffic network. In: SICE-ICASE, 2006. International Joint Conference. [S.l.: s.n.], 2006. p. 4961–4966. Citado na p´agina 55. MAMDANI, E.; ASSILIAN, S. An experiment in linguistic synthesis with a fuzzy logic controller. International Journal of Man-Machine Studies, v. 7, n. 1, p. 1 – 13, 1975. Citado na p´agina 35. NORROS, I. A storage model with self-similar input. Queueing Systems. Citado na p´agina 32. OUYANG, C.-S.; LEE, W.-J.; LEE, S.-J. A TSK-type neurofuzzy network approach to system modeling problems. Systems, Man, and Cybernetics, Part B: Cybernetics, IEEE Transactions on, v. 35, n. 4, p. 751–767, Aug 2005. Citado na p´agina 78. OUYANG, Y. C.; YANG, C. W.; LIAN, W. S. Neural networks based variable bit rate traffic prediction for traffic control using multiple leaky bucket. Journal of High Speed Networks, v. 15, n. 2, p. 11–122, 2006. Citado na p´agina 69. PAPOULIS, A. Probability, Random Variables, and Stochastic Processes. [S.l.]: Mc-Graw Hill, 1984. Citado na p´agina 58. PARK, K.; WILLINGER, W. Self-similar Network Traffic and Performance Evaluation. New York: John Wiley and Sons, 2000. Citado 4 vezes nas p´aginas 19, 20, 31 e 55. PAVLOV, A. N.; ANISHCHENKO, V. S. Multifractal analysis of complex signals. Physics-Uspekhi, v. 50, n. 8, p. 819, 2007. Citado na p´agina 32. PAXSON, V.; FLOYD, S. Wide area traffic: the failure of poisson modeling. Networking, IEEE/ACM Transactions on, v. 3, n. 3, p. 226–244, Jun 1995. Citado na p´agina 57. RAMAKRISHNAN, K. K.; JAIN, R. A Binary Feedback Scheme for Congestion Avoidance in Computer Networks. ACM Trans. Comput. Syst., v. 8, n. 2, p. 158–181, maio 1990. ISSN 0734-2071. Citado na p´agina 89. RIBEIRO, V. J. et al. Multiscale queuing analysis of long-range-dependent network traffic. In: Proc. IEEE INFOCOM. [S.l.: s.n.], 2000. p. 1026–1035. Citado na p´agina 22. RIBEIRO, V. J. et al. Small-time scaling behavior of internet backbone traffic. Computer Networks: The International Journal of Computer and Telecommunications Networking, Elsevier North-Holland, Inc., v. 48, n. 3, p. 315–334, 2005. Citado na p´agina 31. RIEDI, R. H. et al. A multifractal wavelet model with application to network traffic. Information Theory, IEEE Transactions on, v. 45, n. 3, p. 992–1018, Apr 1999. Citado 5 vezes nas p´aginas 19, 22, 24, 31 e 83. ROCHA, F. G. C.; VIEIRA, F. H. T. Modelagem de tr´afego de v´ıdeo mpeg-4 utilizando cascata multifractal com distribuicao autorregressiva dos multiplicadores. In: The 8th International Information and Telecommunication Technologies Symposium. [S.l.: s.n.], 2009. Citado na p´agina 22. ROLLS, D. A.; MICHAILIDIS, G.; HERN´aNDEZ-CAMPOS, F. Queueing analysis of network traffic: Methodology and visualization tools. Comput. Netw., v. 48, n. 3, p. 447–473, jun. 2005. ISSN 1389-1286. Citado 2 vezes nas p´aginas 65 e 93. RONGCAI, Z.; SHUO, Z. Network traffic generation: A combination of stochastic and self-similar. In: Advanced Computer Control (ICACC), 2010 2nd International Conference on. [S.l.: s.n.], 2010. v. 2, p. 171–175. Citado na p´agina 17. ROSS, T. J. Fuzzy logic with engineering applications. [S.l.]: John Wiley & Sons, 2009. Citado 8 vezes nas p´aginas 6, 17, 35, 36, 40, 42, 43 e 55. SCHILLING, R.; HARRIS, S. Fundamentals of digital signal processing using MATLAB. [S.l.]: Cengage Learning, 2011. Citado na p´agina 45. SEURET, S.; GILBERT, A. Pointwise h¨older exponent estimation in data network traffic. ITC Specialist Semina, 2000. Citado na p´agina 31. SOUZA, B. V. L.; VIEIRA, F. H. T. Algoritmo de predi¸c˜ao de tr´afego de rede baseado na fun¸c˜ao autocorrela¸c˜ao de um modelo multifractal. In: XXXIV Congresso Nacional de Matem´atica Aplicada e Computacional. ´Aguas de Lid´oias, SP: [s.n.], 2012. Citado na p´agina 56. SUGENO, M.; YASUKAWA, T. A fuzzy-logic-based approach to qualitative modeling. Fuzzy Systems, IEEE Transactions on, v. 1, n. 1, p. 7–, Feb 1993. Citado na p´agina 55. TAKAGI, T.; SUGENO, M. Fuzzy identification of systems and its applications to modeling and control. Systems, Man and Cybernetics, IEEE Transactions on, SMC-15, n. 1, p. 116–132, Jan 1985. Citado na p´agina 55. TOREYIN, B. et al. Lms based adaptive prediction for scalable video coding. In: Acoustics, Speech and Signal Processing, 2006. ICASSP 2006 Proceedings. 2006 IEEE International Conference on. [S.l.: s.n.], 2006. v. 2, p. II–II. Citado na p´agina 57. TRAN, H. T.; ZIEGLER, T. Adaptive bandwidth provisioning with explicit respect to qos requirements. Computer Communications, v. 28, p. 1862–1876, 2005. Citado na p´agina 69. VIEIRA, F.; ROCHA, F. An adaptive fuzzy model using orthonormal basis functions based on multifractal characteristics applied to network traffic control. Neurocomputing, v. 74, n. 11, p. 1894–1907, 2011. Citado na p´agina 82. VIEIRA, F. H. T.; COSTA, V. H. T.; SOUZA, B. V. L. Neural network based approaches for network traffic prediction. Artificial Intelligence, Evolutionary Computing and Metaheuristics, v. 427, p. 657–684, 2013. Citado na p´agina 22. VIEIRA, F. H. T.; LING, L. L. Modelagem fuzzy utilizando fun¸c˜oes de base ortonormais aplicada `a predi¸c˜ao adaptativa de tr´afego de redes. Learning and Nonlinear Models. Rev. Socied. Brasileira de Redes Neurais (SBRN), v. 4, n. 2, p. 93–11, 2006. Citado 2 vezes nas p´aginas 19 e 26. VIEIRA, F. H. T.; LING, L. L. Performance bounds for a cascade based multifractal traffic model with generalized multiplier distributions. Journal of Communication and Information Systems, v. 21, p. 165–175, 2006. Citado na p´agina 20. VIEIRA, F. H. T.; LING, L. L. Modelagem de tr´afego de redes utilizando cascata multifractal generalizada. Revista de Inform´atica Te´orica e aplicada, v. 15, n. 2, 2008. Citado na p´agina 31. VIEIRA, F. H. T.; ROCHA, F. G. C.; LEMOS, R. P. An algorithm for adaptive prediction of local singularities of network traffic flows. 2010. Citado na p´agina 31. WANG, C. et al. LRED: A Robust and Responsive AQM Algorithm Using Packet Loss Ratio Measurement. Parallel and Distributed Systems, IEEE Transactions on, v. 18, n. 1, p. 29–43, Jan 2007. Citado 2 vezes nas p´aginas 78 e 79. WANG, L.-X. Adaptive Fuzzy Systems and Control: Design and Stability Analysis. Upper Saddle River, NJ, USA: Prentice-Hall, Inc., 1994. ISBN 0-13-099631-9. Citado 11 vezes nas p´aginas 6, 37, 39, 40, 41, 42, 44, 50, 57, 59 e 88. WANG, Z.-x. et al. Research on fuzzy neural network algorithms for nonlinear network traffic predicting. In: Optoelectronics Letters. [S.l.: s.n.], 2006. p. 373–375. ISSN Pending. Citado na p´agina 17. WITS. WITS: Waikato Internet Traffic Storage from University of Waikato. 2014. Dispon´ıvel em: . Citado 2 vezes nas p´aginas 57 e 88. YU, Y. et al. Traffic prediction in 3G mobile networks based on multifractal exploration. Tsinghua Science and Technology, v. 18, n. 4, p. 398–405, 2013. Citado na p´agina 17. ZHANG, R.; PHILLIS, Y. A.; KOUIKOGLOU, V. S. Fuzzy Control of Queuing Systems. [S.l.]: Springer, 2005. Citado na p´agina 17. ZOU, D.; ZHANG, X.; WANG, W. Multi-service traffic models of heterogeneous wireless communication networks. Proc. of the 7th World Congress on Intelligent Control and Automation, p. 495–498, 2008. Citado na p´agina 21.

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    Relation: Pissarra, J. Costa, C.J., Aparício, M. (2012). Brainstorming reconsidered in computer-mediated communication and group support system context. Proceedings of the Workshop on Information Systems and Design of Communication, pp.45-50.New York: ACM. doi>10.1145/2311917.2311926; jjp@uevora.pt; 272

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    Autoři: Moraes, Taciano

    Thesis Advisors: Mercier, Gladys, Root, Sheryl

    Zdroj: Repositório Comum do Brasil - DepositaInstituto Brasileiro de Informação Ciência e TecnologiaIBICT.

    Popis souboru: application/pdf

    Relation: [1] F. Brooks, The mythical man-month and other essays on software engineering. Chapel Hill: Dept. of Computer Science, University of North Carolina at Chapel Hill, 1974. [2] F. Brooks, 'No Silver Bullet Essence and Accidents of Software Engineering', Computer, vol. 20, no. 4, pp. 10-19, 1987. [3] T. DeMarco and T. Lister, Peopleware. New York, NY: Dorset House Pub. Co., 1987. [4] The Standish Group, 'The CHAOS Report', 1994. [5] J. Eveleens and C. Verhoef, 'The rise and fall of the Chaos report figures', IEEE Softw., vol. 27, no. 1, pp. 30-36, 2010. [6] The Standish Group, 'CHAOS Manifesto 2013: Think Big, Act Small', 2013. [7] R. Glass, 'Failure is looking more like success these days', IEEE Softw., vol. 19, no. 1, pp. 104-103, 2002. [8] M. Jørgensen and K. Moløkken-Østvold, 'How large are software cost overruns? A review of the 1994 CHAOS report', Information and Software Technology, vol. 48, no. 4, pp. 297-301, 2006. [9] K. Emam and A. Koru, 'A Replicated Survey of IT Software Project Failures', IEEE Softw., vol. 25, no. 5, pp. 84-90, 2008. [10] H. Abdul-Rahman, F. Mohd-Rahim and W. Chen, 'Reducing failures in software development projects: effectiveness of risk mitigation strategies', Journal of Risk Research, vol. 15, no. 4, pp. 417-433, 2012. [11] T. Lehtinen, M. Mäntylä, J. Vanhanen, J. Itkonen and C. Lassenius, 'Perceived causes of software project failures – An analysis of their relationships', Information and Software Technology, vol. 56, no. 6, pp. 623-643, 2014. [12] J. Pinto, and D. Slevin. 'Critical success factors across the project life cycle' Project Management Institute, 1988. [13] The Project Management Institute, 'Examining Project Manager Insights of Agile and Traditional Success Factors for Information Technology Projects', Marian University, 2011. [14] B. Shore, 'Failure Rates in Global IS Projects and the Leadership Challenge', Journal of Global Information Technology Management, vol. 8, no. 3, pp. 1-5, 2005. [15] P. Nixon, M. Harrington and D. Parker, 'Leadership performance is significant to project success or failure: a critical analysis', Int J Productivity & Perf Mgmt, vol. 61, no. 2, pp. 204-216, 2012. [16] L. Raccoon, 'A leadership primer for software engineers', ACM SIGSOFT Softw. Eng. Notes, vol. 31, no. 4, p. 10, 2006. [17] V. Anantatmula, 'Project Manager Leadership Role in Improving Project Performance', Engineering Management Journal, vol. 22, no. 1, pp. 13-22, 2010. [18] L. Geoghegan and V. Dulewicz, 'Do project managers' leadership competencies contribute to project success?', Proj Mgmt Jrnl, vol. 39, no. 4, pp. 58-67, 2008. [19] J. R. Turner and R. Müller, 'The project manager's leadership style as a success factor on projects: A literature review', Project Management Institute, 2005. [20] L. Yang, C. Huang and K. Wu, 'The association among project manager's leadership style, teamwork and project success', International Journal of Project Management, vol. 29, no. 3, pp. 258-267, 2011. [21] Center for Creative Leadership, 'Blended Learning for Leadership: The CCL Approach', 2014. [22] Deloitte Consulting LLP and Bersin, 'Leaders at all levels: Close the gap between hype and readiness', Delloite University Press, 2014. [23] K. O' Leonard and L. Loew, 'Leadership Development Factbook 2012 Benchmarks and Trends in U.S. Leadership Development', Bersin.com, 2015. [Online]. Available: https://www.bersin.com/ Store/Details.aspx?docid=15587. [Accessed: 15- Nov- 2015]. [24] S. Garr and L. Loew, 'High Impact Leadership Development Driving Organizational Maturity and Business Impact', Bersin.com, 2015. [Online]. Available: https://www.bersin.com/Practice/ Detail.aspx?id=14449. [Accessed: 15- Nov- 2015]. [25] Ashridge, 'Developing the Global Leader of Tomorrow', Hertfordshire, 2009. [26] Gallup, 'State of the American Manager: Analytics and Advice for Leaders', 2015. [27] The Conference Board, 'Job Satisfaction: 2014 Edition', 2015. [28] J. BUTLER and R. CANTRELL, 'Effects of Perceived Leadership Behaviors on Job Satisfaction and Productivity', Psychological Reports, vol. 80, no. 3, pp. 976-978, 1997. [29] H. Saleem, 'The Impact of Leadership Styles on Job Satisfaction and Mediating Role of Perceived Organizational Politics', Procedia - Social and Behavioral Sciences, vol. 172, pp. 563-569, 2015. [30] The Ken Blanchard Companies, 'The High Cost of Doing Nothing: Quantifying the Impact of Leadership on the Bottom Line', 2009. [Online]. Available: http://www.kenblanchard.com/img/pub/Blanchard_The_High_Cost_of_Doing_Nothing. pdf. [Accessed: 15- Nov- 2015]. [31] A. Hussey, 'The effect of ethics on labor market success: Evidence from MBAs', Journal of Economic Behavior & Organization, vol. 80, no. 1, pp. 168-180, 2011. [32] T. Carlyle, On heroes, hero-worship, and the heroic in history. New York: Frederick A. Stokes & Brother, 1842. [33] H. Spencer, The study of sociology. New York: D. Appleton, 1873, p. 30. [34] W. James, 'Great Men and their Environment', Harvard Natural History Society, 1880. [35] F. Fiedler, A theory of leadership effectiveness. New York: McGraw-Hill, 1967. [36] V. Dulewicz and M. Higgs, 'Assessing leadership styles and organizational context', Journal of Managerial Psychology, vol. 20, no. 2, pp. 105-123, 2005. [37] R. Lord, R. Foti and C. De Vader, 'A test of leadership categorization theory: Internal structure, information processing, and leadership perceptions', Organizational Behavior and Human Performance, vol. 34, no. 3, pp. 343-378, 1984. [38] J. Sosik and V. Godshalk, 'Leadership styles, mentoring functions received, and jobrelated stress: a conceptual model and preliminary study', Journal of Organizational Behavior, vol. 21, no. 4, pp. 365-390, 2000. [39] A. Eagly and M. Johannesen-Schmidt, 'The Leadership Styles of Women and Men', Journal of Social Issues, vol. 57, no. 4, pp. 781-797, 2001. [40] D. Goleman, R. Boyatzis and A. McKee, Primal leadership: Realizing the Power of Emotional Intelligence. Harvard Business School Press, 2002. [41] S. Gherardi and B. Poggio, 'Tales of Ordinary Leadership. A Feminist Approach to Experiential Learning', Revista de Sociologia, vol. 93, pp. 53-65, 2009. [42] A. Eagly, S. Karau and M. Makhijani, 'Gender and the effectiveness of leaders: A meta-analysis.', Psychological Bulletin, vol. 117, no. 1, pp. 125-145, 1995. [43] C. Chianglin, J. Chen and P. Yu, 'Transforming from a Researcher into a Leader in High-Tech Industries', Int. J. Info. Tech. Dec. Mak., vol. 03, no. 03, pp. 379-393, 2004. [44] Blanchard, Ken. 2015. 'Critical Leadership Skills - Key Traits That Can Make or Break Today’S Leaders'. The Ken Blanchard Companies. http://www.kenblanchard.com/img/pub/pdf_critical_leadership_skills.pdf. [Accessed: 28- Oct- 2015]. [45] Prive, Tanya. 2012. 'Top 10 Qualities That Make A Great Leader'. Forbes. http://www.forbes.com/sites/tanyaprive/2012/12/19/top-10-qualities-that-make-agreat- leader/. [Accessed: 28- Oct- 2015]. [46] Zenger, Jack, and Joseph Folkman. 2014. 'The Skills Leaders Need At Every Level'. Harvard Business Review. https://hbr.org/2014/07/the-skills-leaders-need-at-everylevel. [Accessed: 29- Oct- 2015]. [47] Downard, Brian. 2015. '31 Leadership Experts Reveal Top Leadership Skills & Traits'. ELIV8. http://eliv8group.com/leadership-expert-roundup/. [Accessed: 27- Oct- 2015]. [48] Center for Creative Leadership, "Expanding the Leadership Equation: Developing Next-Generation Leaders", 2015. [49] C. Herbermann, 'Education in Ancient Egypt', The American Catholic Quarterly Review, vol. 18, no. 0271-5767, pp. 176-200, 2015. [50] G. Duke, 'Sophists | Internet Encyclopedia of Philosophy', Iep.utm.edu, 2015. [Online]. Available: http://www.iep.utm.edu/sophists/. [Accessed: 09- Nov- 2015]. [51] New World Encyclopedia, 'Platonic Academy', 2015. [Online]. Available: http://www.newworldencyclopedia.org/entry/Platonic_Academy. [Accessed: 09- Nov- 2015]. [52] B. Pauley, 'The Academy Versus The Lyceum', The Thin Tweed Line - Humanstudy.org, 2012. [Online]. Available: http://www.humanstudy.org/history/2012- 03-pauley-b.html. [Accessed: 09- Nov- 2015]. [53] C. Michael, ‘Historiography and Roman Education’, 1953. History of Education Journal 4. History of Education Society, pp. 149–56. [Online]. Available: http://jstor.org/stable/3659151. [54] H. Marrou, A history of education in antiquity. New York: New American Library, 1964, pp. 232-234. [55] R. Guisepi, 'The History of Education', History-world.org. [Online]. Available: http://history-world.org/history_of_education.htm. [Accessed: 09- Nov- 2015]. [56] P. Rich , Education and culture in the barbarian West - sixth through eighth centuries. Columbia: University of South Carolina Press, 1976, pp. 126-7, 282-98. [57] J. Hexter, 'The Education of the Aristocracy in the Renaissance', The Journal of Modern History, vol. 22, no. 1, p. 1, 1950. [58] M. McCall, M. Lombardo and A. Morrison, The lessons of experience: how successful executives develop the job. Lexington: Lexington Books, 1988. [59] J. Cross, '50 suggestions for implementing 70-20-10', Internet Time Blog, 2013. [Online]. Available: http://www.internettime.com/2013/02/50-suggestions-forimplementing- 70-20-10/. [Accessed: 13- Sep- 2015]. [60] DeakinPrime, 'Demystifying 70:20:10', Deakin University, Melbourne, 2013. [61] J. Segers, 'The problem with the 70:20:10 rule in leadership development', The Future Leadership Initiative, 2012. [Online]. Available: https://thefutureleadershipinitiative.wordpress.com/2012/08/04/the-problem-withthe- 702010-rule-in-leadership-development/. [Accessed: 13- Sep- 2015]. [62] J. Williams, C. Townsend and J. Linder, 'Teaching Leadership: Do Students Remember and Utilize the Concepts We Teach?', Journal of Leadership Education, vol. 4, no. 1, pp. 62-74, 2015. [63] R. Gillies, 'Teachers' and students' verbal behaviors during cooperative and smallgroup learning', British Journal of Educational Psychology, vol. 76, no. 2, pp. 271-287, 2006. [64] D. Ancona and R. Cole, 'Strategies for Learning: Small-Group Activities in American, Japanese, and Swedish Industry', Administrative Science Quarterly, vol. 36, no. 2, p. 309, 1991. [65] C. Connolly, M. Carns, and A. Carns, Traditional-and activity-based laboratory groups: A quantitative comparison of two teaching approaches. Journal of Professional Counseling, Practice, Theory, & Research, vol. 33, no. 1, p. 4, 2005. [66] T. Tomcho and R. Foels, 'Meta-Analysis of Group Learning Activities', Teaching of Psychology, vol. 39, no. 3, pp. 159-169, 2012. [67] A. Yazedjian and B. Kolkhorst, 'Implementing Small-Group Activities in Large Lecture Classes', College Teaching, vol. 55, no. 4, pp. 164-169, 2007. [68] R. Hertz-Lazarovits and N. Miller, Interaction in cooperative groups. Cambridge: Cambridge University Press, 1992. [69] J. Tang and L. Leifer, 'An observational methodology for studying group design activity', Research in Engineering Design, vol. 2, no. 4, pp. 209-219, 1991. [70] L. Suchman, Plans and Situated Actions: The Problem of Human-Machine Communication. Cambridge [Cambridgeshire]: Cambridge University Press, 1987, p. 114. [71] L. Michaelsen, L. Fink and A. Knight, 'Designing Effective Group Activities: Lessons for Classroom Teaching and Faculty Development', Professional and Organizational Development Network in Higher Education, vol. 16, no. 373-397, 1997. [72] HayGroup, 'The Kolb Learning Style Inventory - Version 3.1 2005 Technical Specifications', Case Western Reserve University, 2005. [73] A. Kolb and D. Kolb, 'Experiential Learning Theory: A Dynamic, Holistic Approach to Management Learning, Education and Development', The SAGE Handbook of Management Learning, Education and Development, pp. 42-68, 2009. [74] A. Chapman, ‘David Kolb's learning styles model and experiential learning theory', Businessballs, 2006. [Online]. Available: http://www.businessballs.com/kolblearningstyles.htm. [Accessed: 05- Nov- 2015]. [75] D. Boud, R. Keogh and D. Walker, Reflection, turning experience into learning. London: Kogan Page, 1985. [76] M. Tennant, Psychology and adult learning. London: Routledge, 2006. [77] D. Holman, K. Pavlica and R. Thorpe, 'Rethinking Kolb's Theory of Experiential Learning in Management Education: The Contribution of Social Constructionism and Activity Theory', Management Learning, vol. 28, no. 2, pp. 135-148, 1997. [78] M. Reynolds, 'Critical Reflection and Management Education: Rehabilitating Less Hierarchical Approaches', Journal of Management Education, vol. 23, no. 5, pp. 537-553, 1999. [79] R. Vince, 'Behind and Beyond Kolb's Learning Cycle', Journal of Management Education, vol. 22, no. 3, pp. 304-319, 1998. [80] M. Smith, 'David A. Kolb on experiential learning.', The encyclopedia of informal education, 2010. [Online]. Available: http://infed.org/mobi/david-a-kolb-onexperiential- learning/. [Accessed: 19- Out- 2015]. [81] M. Gitsham, Developing the global leader of tomorrow. Ashridge, 2008. [82] G. Warnick, J. Schmidt and A. Bowden, "An Experiential Learning Approach to Develop Leadership Competencies in Engineering and Technology Students", in 2014 ASEE Annual Conference, Indianapolis, 2014. [83] J. Krupar and G. Suckarieh, "Leadership And Teamwork Education For Engineering And Technology Students", in 2005 ASEE Annual Conference, Portland, 2005. [84] M. Gitsham, "Experiential learning for leadership and sustainability at IBM and HSBC", Journal of Mgmt Development, vol. 31, no. 3, pp. 298-307, 2012. [85] T. Smith and M. Rosser, "Leadership Development through Experiential Learning", in Association of Leadership Educators Conference, Ft. Worth, 2007. [86] K. Guthrie and T. Jones, "Teaching and Learning: Using Experiential Learning and Reflection for Leadership Education", New Directions for Student Services, vol. 2012, no. 140, pp. 53-63, 2012. [87] S. Penger, J. Znidarsic and V. Dimovski, "Experiential Learning And Management Education: Empirical Research And Implications For Practice In Higher Education In Slovenia", International Journal of Management and Information Systems, vol. 15, no. 1, pp. 23-34, 2011. [88] M. Qurban and R. Austria, "Improving the Communication Skills of IS Developers during Requirements Elicitation Using Experiential Learning", Journal of Information Systems Education, vol. 20, no. 3, pp. 301-311, 2009. [89] G. Regev, D. Gause and A. Wegmann, "Experiential learning approach for requirements engineering education", Requirements Engineering, vol. 14, no. 4, pp. 269- 287, 2009. [90] J. Bangs, "Experiential Learning in an Organizational Leadership Program", Journal of College Teaching & Learning, vol. 8, no. 10, pp. 29-34, 2011. [91] J. Barbuto, "Dramaturgical Teaching in the Leadership Classroom", Journal of Leadership Education, vol. 5, no. 2, pp. 4-13, 2006. [92] I. Sutherland and J. Jelinek, "From Experiential Learning to Aesthetic Knowing: The Arts in Leadership Development", Advances in Developing Human Resources, vol. 17, no. 3, pp. 289-306, 2015. [93] E. Turesky and D. Gallagher, "Know thyself Coaching for leadership using Kolb’s Experiential Learning Theory", The Coaching Psychologist, vol. 7, no. 1, pp. 5-14, 2011. [94] W. Zhang and M. Brundrett, "School leaders' perspectives on leadership learning: the case for informal and experiential learning", Management in Education, vol. 24, no. 4, pp. 154-158, 2010. [95] R. Belton, "The impacts of experiential learning on leadership identity in female college graduates", PhD, University of North Carolina at Greensboro, 2010. [96] S. Kaagan, Leadership Games: Experiential Learning for Organizational Development. Thousand Oaks, Calif.: Sage Publications, 1999. [97] George Mason University, "Leadership Activities and Exercises", 2015. [Online]. Available: http://lead.gmu.edu/training-resources/activities-and-exercises/. [Accessed: 02- Oct- 2015]. [98] A. Chapman, "Donald Kirkpatrick's Learning Evaluation Theory", Businessballs.com, 2015. [Online]. Available: http://www.businessballs.com/kirkpatricklearningevaluationmodel.htm. [Accessed: 04- Oct- 2015].

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