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Diploma laboratory

Some basic information about the module

Cycle of education: 2017/2018

The name of the faculty organization unit: The faculty Chemistry

The name of the field of study: Chemical and process engineering

The area of study: technical sciences

The profile of studing:

The level of study: second degree study

Type of study: full time

discipline specialities : Processing of polymer materials (PT), Product design and engineering of pro-ecological processes (PP)

The degree after graduating from university: Master of Science (MSc)

The name of the module department : Faculty of Chemistry

The code of the module: 7703

The module status: mandatory for teaching programme Processing of polymer materials (PT), Product design and engineering of pro-ecological processes (PP)

The position in the studies teaching programme: sem: 3 / L420 / 28 ECTS / Z

The language of the lecture: Polish

The name of the coordinator: Joanna Wojturska, PhD, Eng.

The aim of studying and bibliography

The main aim of study: Gaining experience in the field of research techniques used in laboratory work and skills of documenting and analyzing the results. Gaining the skills of the preparing of a scientific raport: searching and then read the scientific literature related to the field of the object of master thesis, specify the research problem, which then student consciously consider and resolve on the basis of the knowledge acquired during their studies, information from literature and research results

The general information about the module: The module is realized by the student him/herself with the supervision of the supervisor. Diploma exam concludes the course of study. As part of the module, according to the Study Rules for PRz, student has to defense of the thesis.

Bibliography required to complete the module
Bibliography used during classes/laboratories/others
1 dostępna literatura odnosząca się do tematu realizowanej pracy .

Basic requirements in category knowledge/skills/social competences

Formal requirements: Registration for 3 semester. Passing all other training modules covered course of study.

Basic requirements in category knowledge: Detailed knowledge of the master thesis

Basic requirements in category skills: Specific skills, including laboratory sklills, in the field of diploma thesis.

Basic requirements in category social competences: General social skils in the field of graduate

Module outcomes

MEK The student who completed the module Types of classes / teaching methods leading to achieving a given outcome of teaching Methods of verifying every mentioned outcome of teaching Relationships with KEK Relationships with OEK
01 Student is able to find and use information from the scientific literature, including the English-language literature, databases and other sources related to the field of study realization of the tasks commissioned by the supervisor presentation of achievements (portfolio), written report K_U07+
T2A_U08+++
02 Student is able to prepare well documented written report related to the issues studied in the main field of study realization of the tasks commissioned by the supervisor written raport K_W07+
K_U08+++
K_K03++
T2A_W08+
T2A_U07++
T2A_U08+++
T2A_K04++
03 Student can use basic information and communication technologies, including computer programs, supporting the implementation of the research task. realization of the tasks commissioned by the supervisor written raport K_U07+++
T2A_U08+++
04 Student is able to perform research in the main field of study realization of the tasks commissioned by the supervisor written raport K_U08+++
T2A_U07++
T2A_U08+++
05 Student can prepare and present a presentation of the research that comprises the thesis. realization of the tasks commissioned by the supervisor presentation during thesis defense K_U07++
T2A_U08+++

Attention: Depending on the epidemic situation, verification of the achieved learning outcomes specified in the study program, in particular credits and examinations at the end of specific classes, can be implemented remotely (real-time meetings).

The syllabus of the module

Sem. TK The content realized in MEK
3 TK01 Getting to know the scientific literature related to the subject of the thesis praca własna MEK01
3 TK02 Experimental measurements, the creation of a computer program or other work which use of research tools appropriate for the studied area and educational profile laboratorium MEK03 MEK04
3 TK03 Preparation of the master thesis praca własna MEK02
3 TK04 Master thesis defense nie dotyczy MEK05

The student's effort

The type of classes The work before classes The participation in classes The work after classes
Laboratory (sem. 3) The preparation for a Laboratory: 100.00 hours/sem.
contact hours: 420.00 hours/sem.
Finishing/Making the report: 60.00 hours/sem.
Others: 60.00 hours/sem.
Advice (sem. 3) The participation in Advice: 30.00 hours/sem.
Credit (sem. 3) Others: 30.00 hours/sem.

The way of giving the component module grades and the final grade

The type of classes The way of giving the final grade
Laboratory According to the Rules of study at PRz the master thesis assessment is made by the supervisor and one reviewer appointed by the Dean, within two weeks from the date of appointment. The assessment was documented using the appropriate evaluation forms. In the case of a mastre thesis one of those reviever is an associate professor or full professor.
The final grade Final assessment of laboratory module and the thesis work is signed by the dean. The final evaluation of the laboratory module and the thesis is the arithmetic mean of the assessment supervisor and a reviewer. In determining the assessment module thesis applies the scale of assessments as set out in the Rules of higher education on PRz.

Sample problems

Required during the exam/when receiving the credit
(-)

Realized during classes/laboratories/projects
(-)

Others
(-)

Can a student use any teaching aids during the exam/when receiving the credit : no

The contents of the module are associated with the research profile: yes

1 Ł. Byczyński; D. Czachor-Jadacka; M. Kisiel; B. Mossety-Leszczak; B. Pilch-Pitera; K. Pojnar; M. Walczak; J. Wojturska Poliuretanowy lakier proszkowy oraz sposób wytwarzania poliuretanowego lakieru proszkowego 2024
2 Ł. Byczyński; E. Ciszkowicz; D. Czachor-Jadacka; M. Kisiel; B. Mossety-Leszczak; B. Pilch-Pitera; M. Walczak; J. Wojturska Wodna dyspersja kationomerów uretanowo-akrylowych, sposób wytwarzania wodnej dyspersji kationomerów uretanowo-akrylowych oraz sposób wytwarzania fotoutwardzalnej powłoki z wykorzystaniem tej wodnej dyspersji 2024
3 Ł. Byczyński; D. Czachor-Jadacka; B. Pilch-Pitera; J. Wojturska; J. Wojturski; P. Wrona Farba proszkowa 2022
4 Ł. Byczyński; P. Król; B. Pilch-Pitera; J. Wojturska Sposób wytwarzania blokowanych poliizocyjanianów do poliuretanowych powłok proszkowych 2022
5 Ł. Byczyński; P. Król; B. Pilch-Pitera; J. Wojturska Blokowane poliizocyjaniany, ich zastosowanie oraz poliuretanowe lakiery proszkowe 2021
6 Ł. Byczyński; P. Król; B. Pilch-Pitera; J. Wojturska Blokowane poliizocyjaniany, sposób ich wytwarzania i zastosowanie 2021
7 J. Wojturska The effect of chain extender structure on the enzymatic degradation of carbohydrate based polyurethane elastomers 2020