项目介绍
The course encompasses several different educational and societal objectives: Societal demand for multi-domain expertise to tackle the challenges posed by observing and modelling complex systems; The need to train postgraduate students with high levels of interdisciplinary fluency and team working skills; and, A demand for highly trained research scientists able to drive data analysis on feature- rich sets of data from diverse sources. The course has four primary objectives for the training it will provide: To develop students’ expertise in the techniques used to study planets, from the Earth’s deepest past, the solar system planets, to exoplanets; To give students a working knowledge of the structure of life, its essential physical- chemical requirements, and its impacts on planetary environments; To ensure students get essential practical experience in running a research project in an interdisciplinary team; and, To build students’ capacity in modern data handling techniques and convey an awareness of the wide range of academic and industrial applications of these skills. The course will benefit students seeking to pursue a variety of careers: Academic research careers in planetary or exoplanetary science, evolutionary biology, or Earth sciences; Careers as research leaders in high-technology enterprises; and, Consultants, assimilating complex multi-domain information and communicating results to stakeholders and teams.
官网原文摘录The course encompasses several different educational and societal objectives:
Societal demand for multi-domain expertise to tackle the challenges posed by observing and modelling complex systems;
The need to train postgraduate students with high levels of interdisciplinary fluency and team working skills; and,
A demand for highly trained research scientists able to drive data analysis on feature- rich sets of data from diverse sources.
The course has four primary objectives for the training it will provide:
To develop students’ expertise in the techniques used to study planets, from the Earth’s deepest past, the solar system planets, to exoplanets;
To give students a working knowledge of the structure of life, its essential physical- chemical requirements, and its impacts on planetary environments;
To ensure students get essential practical experience in running a research project in an interdisciplinary team; and,
To build students’ capacity in modern data handling techniques and convey an awareness of the wide range of academic and industrial applications of these skills.
The course will benefit students seeking to pursue a variety of careers:
Academic research careers in planetary or exoplanetary science, evolutionary biology, or Earth sciences;
Careers as research leaders in high-technology enterprises; and,
Consultants, assimilating complex multi-domain information and communicating results to stakeholders and teams.