TOPICS IN MATERIALS GROWTH AND SYNTHESIS

Course Information
TitleΘΕΜΑΤΑ ΑΝΑΠΤΥΞΗΣ ΚΑΙ ΣΥΝΘΕΣΗΣ ΥΛΙΚΩΝ / TOPICS IN MATERIALS GROWTH AND SYNTHESIS
CodeΜΦΥ776
FacultySciences
SchoolPhysics
Cycle / Level2nd / Postgraduate
Teaching PeriodSpring
CoordinatorMavroeidis Angelakeris
CommonNo
StatusActive
Course ID40000269

Class Information
Academic Year2016 – 2017
Class PeriodSpring
Instructors from Other Categories
Class ID
600101961
Course Type 2016-2020
  • Scientific Area
Course Type 2011-2015
Specific Foundation / Core
Mode of Delivery
  • Face to face
Digital Course Content
Erasmus
The course is also offered to exchange programme students.
Language of Instruction
  • Greek (Instruction, Examination)
  • English (Instruction, Examination)
Learning Outcomes
Student get a spherical acquaintance on the topic of nanomagnetism and current trends in magnetic nanostructures both from fundamental and applicability point of view.This module addresses the recent developments on magnetic nanostructures and consists of the following sections: Ferromagnetism: In this introductory section, basic background knowledge on magnetic nanostructures and nanotechnology is given. Techniques: In this section, techniques for synthesis and characterization of magnetic nanostructures are described. Case studies: In this major section three case studies of magnetic nanostructures (From one to three nanodimensions) are described both from synthesis, structure and magnetic point of view. a). Magnetic multilayes b) Ordered Magnetic Nanostructures c) Magnetic Nanoparticles. The last section of this module applications schemes of magnetic nanostructures are given focusing on current trends and needs (a). permanent magnets, b). magnetic recording c). biomedical magnetic carriers.
General Competences
  • Apply knowledge in practice
  • Retrieve, analyse and synthesise data and information, with the use of necessary technologies
  • Adapt to new situations
  • Make decisions
  • Work autonomously
  • Work in teams
  • Work in an international context
  • Work in an interdisciplinary team
  • Generate new research ideas
  • Design and manage projects
  • Appreciate diversity and multiculturality
  • Respect natural environment
  • Demonstrate social, professional and ethical commitment and sensitivity to gender issues
  • Be critical and self-critical
  • Advance free, creative and causative thinking
Course Content (Syllabus)
Magnetic Nanostructures This module addresses the recent developments on magnetic nanostructures and consists of the following sections: Ferromagnetism: In this introductory section, basic background knowledge on magnetic nanostructures and nanotechnology is given. Techniques: In this section, techniques for synthesis and characterization of magnetic nanostructures are described. Case studies: In this major section three case studies of magnetic nanostructures (From one to three nanodimensions) are described both from synthesis, structure and magnetic point of view. a). Magnetic multilayes b) Ordered Magnetic Nanostructures c) Magnetic Nanoparticles. The last section of this module applications schemes of magnetic nanostructures are given focusing on current trends and needs (a). permanent magnets, b). magnetic recording c). biomedical magnetic carriers.
Keywords
Magnetic nanostructures Nanomagnetism
Educational Material Types
  • Notes
  • Slide presentations
Use of Information and Communication Technologies
Use of ICT
  • Use of ICT in Course Teaching
  • Use of ICT in Communication with Students
Course Organization
ActivitiesWorkloadECTSIndividualTeamworkErasmus
Lectures
Fieldwork
Total
Student Assessment
Description
This module consists of 5 lessons. Each lesson is split in two parts: 1). Introductory Lecture (2-3 hours) on specific subject. 2). Project Assignment (one per student in each lesson, 2-3 hours). In accordance with corresponding lecture, students are undertaking relevant projects either on literature search or on experimental data treatment. These projects assist in deeper and thorough understanding of the lecture topics. Students spend 2-3 hours in PCLAB where they assemble their report coordinated by the lecturer and submit it via email for evaluation. The final grade on this module comprises of 40% of the projects grades (average of 5 projects in total) and 60% of the final examination.
Student Assessment methods
  • Written Exam with Short Answer Questions (Formative)
  • Written Exam with Extended Answer Questions (Formative)
  • Written Assignment (Formative)
  • Report (Formative)
Bibliography
Course Bibliography (Eudoxus)
Σημειώσεις
Additional bibliography for study
1. Magnetic nanostructures, American Scientific Publishers, Edited by Harry Cingh Nalwa, 2002. 2. Modern Magnetic Materials, Robert. C. O’Handley, J. Wiley & Sons, 2000. 3. Handbook of Modern Ferromagnetic Materials Alex Goldman, Kluwer Academic Publishers, 1999. 4. “Μαγνητισμός και Μαγνητικά Υλικά (33074645), Μ. Αγγελακέρης, Κ. Γ. Ευθυμιάδης, Ο. Καλογήρου, CopyCity ΕΠΕ
Last Update
01-02-2016