185 application-programming-android-"Prof" positions at Hong Kong Polytechnic University
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qualification. Applicants are invited to contact Prof. Man-Nok Wong at telephone number 3400 3925 or via email at mannok.wong@polyu.edu.hk for further information. Conditions of Service A highly competitive
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to those with experience in flow stability analysis and solid knowledge of computational fluid dynamics. Applicants are invited to contact Prof. J. Hao at telephone number 3400 8060 or via email at jiaao.hao
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. Applicants are invited to contact Prof. Amy Y. Ou at telephone number 2766 4057 or via email at amy-yi.ou@polyu.edu.hk for further information. Conditions of Service A highly competitive remuneration package
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given to those with research management experience and strong communication skills. Applicants are invited to contact Ir Prof. C.Y. Wen at telephone number 3400 2387 or via email at cywen@polyu.edu.hk
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in flow stability analysis and solid knowledge of computational fluid dynamics. Applicants are invited to contact Prof. J. Hao at telephone number 3400 8060 or via email at jiaao.hao@polyu.edu.hk
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in the research project - “Research and development of 3D mapping aided GNSS PPP - RTK”. Qualifications Applicants should have a master’s degree. Applicants are invited to contact Prof. L. T. Hsu
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should have a master’s degree. Applicants are invited to contact Prof. L. T. Hsu at telephone number 3400 8061 or via email at lt.hsu@polyu.edu.hk for further information. Conditions of Service
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, and demonstrate proficiency in CLO 3D. Preference will be given to those with experience in brace design. Applicants are invited to contact Prof. Joanne Yip at telephone number 2766 4848 or via email
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and machine learning; and (c) demonstrated ability to undertake high quality academic research. Applicants are invited to contact Prof. Zhang Xiaoge at telephone number 2766 6583 or via email at
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- “Investigation of the hygroscopic morphing and swinging behavior of MXene-based film”. Qualifications Applicants should: (a) have a master’s degree in Solid Mechanics or Material Science; (b) be highly self