COURSE UNIT TITLE

: NANOMATERIALS AND MEDICAL APPLICATIONS

Description of Individual Course Units

Course Unit Code Course Unit Title Type Of Course D U L ECTS
ELECTIVE

Offered By

Faculty Of Science

Level of Course Unit

First Cycle Programmes (Bachelor's Degree)

Course Coordinator

PROFESSOR DOCTOR MÜNIRE NALAN DEMIR

Offered to

Biology
Computer Science
Mathematics
Physics
Chemistry
Statistics

Course Objective

The objective of this course is to give an education to students regarding structure of nanomaterials and their potential use for biomedical applications

Learning Outcomes of the Course Unit

1   1. Students are expected to identify nanomaterials and should be able to classify them
2   2. Should be able to have information about biocompatibility and potential functions.
3   3. Should have information about nanobiosensor and medical applications.
4   4. Should be able have information about targeted drug delivery and nanomedical devices
5   5. Should have enough information about nanopharmacology and nonotoxicology

Mode of Delivery

Face -to- Face

Prerequisites and Co-requisites

None

Recomended Optional Programme Components

None

Course Contents

Week Subject Description

Recomended or Required Reading

Zoraida Aguilar, Nanomaterials for Medical Applications, 2013, Elsevier, ISBN 978-0-12-385089-8

Planned Learning Activities and Teaching Methods

Powerpoint Presentations, Interactive education skills, Question-answer techniques, Homework

Assessment Methods

SORTING NUMBER SHORT CODE LONG CODE FORMULA
1 MTE MIDTERM EXAM
2 ASG ASSIGNMENT
3 FIN FINAL EXAM
4 FCG FINAL COURSE GRADE MTE * 0.30 + ASG * 0.30 + FIN * 0.40
5 RST RESIT
6 FCGR FINAL COURSE GRADE (RESIT) MTE * 0.30 + ASG * 0.30 + RST * 0.40


Further Notes About Assessment Methods

None

Assessment Criteria

To be announced.

Language of Instruction

English

Course Policies and Rules

To be announced.

Contact Details for the Lecturer(s)

nalan.tuzmen@deu.edu.tr

Office Hours

To be announced.

Work Placement(s)

None

Workload Calculation

Activities Number Time (hours) Total Work Load (hours)
Lectures 13 3 39
Preparations before/after weekly lectures 9 6 54
Preparation for midterm exam 1 9 9
Preparation for final exam 1 12 12
Preparing assignments 4 6 24
Midterm 1 3 3
Final 1 4 4
TOTAL WORKLOAD (hours) 145

Contribution of Learning Outcomes to Programme Outcomes

PO/LOPO.1PO.2PO.3PO.4PO.5PO.6PO.7PO.8PO.9PO.10PO.11PO.12PO.13PO.14
LO.145345
LO.2453344
LO.34545
LO.44534
LO.54534