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Elements of Science Communication

Code: EC/DC4001     Acronym: EC/DC4001     Level: 400

Keywords
Classification Keyword
OFICIAL Science Teaching/Science Divulgation

Instance: 2020/2021 - 1S Ícone do Moodle

Active? Yes
Responsible unit: Science Education Unit
Course/CS Responsible: Master in Science Education and Communication

Cycles of Study/Courses

Acronym No. of Students Study Plan Curricular Years Credits UCN Credits ECTS Contact hours Total Time
M:EDC 6 Official Study Plan 2019/2020 1 - 6 42 162

Teaching language

Portuguese

Objectives

It is intended that at the end of this course students will be able to discuss the fundamentals of science communication, analyze the national and international reality of science communication, know models and appropriate communication techniques for different audiences and science communication initiatives. Evaluation of specific science communication initiatives will also be considered.

Learning outcomes and competences


  1.    Discuss the fundamentals of science communication

  2.     Analyze the national and international reality of science communication

  3.     Analyze scientific articles in the area of science communication

  4.     Examine the process of publication in scientific journals

  5.     Integrate scientific communication techniques into oral communications and posters

  6.     Discuss the phases of an R & D project

  7.     Identify public and models of science communication

  8.     Differentiate types of initiatives of science communication

  9.     Describe the presence of science in museums, books and publications

  10.     Discuss the potential of scientific illustration in science communication

  11.     Describe the objectives and forms of public involvement in citizen science initiatives

  12.     Analyze evaluation models of the triad intentions-agenda- satisfaction of visitors in museums

  13.     Evaluate specific on going initiatives of science communication

  14.     Make a proposal for an initiative of science communication

Working method

Presencial

Program


1. Concepts and contexts in dissemination of sciences
1.1 Clarification of concepts
1.2 Motivations and barriers in dissemination of sciences
1.3 Surveys of scientific culture

2. Communication of sciences to peers
2.1 Scientific writing and publication in scientific journals
2.2 Oral and poster communications
2.3 R&D projects: application, development and dissemination

3. Dissemination of the sciences to the public
3.1 Paradigms (PAS, PUS, PEST) and public in dissemination of sciences
3.2 Types of initiatives of dissemination of sciences
3.3 Citizen science
3.4 Museums and Science Centers
3.5 Books and publications of dissemination of sciences
3.6 Scientific illustration in several activities of dissemination of sciences

4. Evaluation of practices of dissemination of sciences
4.1 Studies on the experiences of museum visitors
4.2 Evaluation models of the triad intentions-agenda- satisfaction of visitors

Mandatory literature

Bowater, L. & Yeoman, K.; Science Communication: A Practical Guide for Scientists., UK: Wiley-Blackwell, 2013
Bucchi, M., & Trench, B. ; Routledge Handbook of Public Communication of Science and Technology: Second edition, London & New York: Routledge, 2014
Hodges, E R. S. (Ed.) ; The Guild handbook of scientific illustration (2nd ed). , Hoboken, New Jersey: John Wiley & Sons, 2003
Illingworth, S., & Allen G. ; Effective science communication - a practical guide to surviving as a scientist. , Bristol, UK: IOP Publishing, 2016

Comments from the literature

Specific bibliography is given in each class and is also placed in Moodle.

Teaching methods and learning activities

Theoretical-practical classes: in the theoretical component, strategic pluralism is based on PowerPoint presentations, presentation of studies, videos, results of surveys, projects and readings of scientific articles with critical analysis. The practical component is to carry out group and individual work.

Evaluation Type

Distributed evaluation without final exam

Assessment Components

designation Weight (%)
Apresentação/discussão de um trabalho científico 20,00
Trabalho escrito 80,00
Total: 100,00

Amount of time allocated to each course unit

designation Time (hours)
Apresentação/discussão de um trabalho científico 6,00
Frequência das aulas 42,00
Trabalho escrito 50,00
Estudo autónomo 64,00
Total: 162,00

Eligibility for exams


To obtain frequency the students must perform and get approval at least half of the tasks associated with the assessment components.

Calculation formula of final grade

Evaluation Formula:

A - Presentation and discussion of work
B - Written work

Final grade = 0.20 x A + 0.80 x B
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