Cycle of education: 2022/2023
The name of the faculty organization unit: The faculty Chemistry
The name of the field of study: Hydrogen technologies
The area of study: technical sciences
The profile of studing:
The level of study: second degree study
Type of study: past time
discipline specialities :
The degree after graduating from university: Master of Science (MSc)
The name of the module department : Department of Chemical Engineering and Process Control
The code of the module: 16572
The module status: mandatory for teaching programme
The position in the studies teaching programme: sem: 1 / W9 P18 / 3 ECTS / Z
The language of the lecture: Polish
The name of the coordinator: Marcin Chutkowski, PhD, Eng.
The main aim of study:
The general information about the module:
Formal requirements:
Basic requirements in category knowledge:
Basic requirements in category skills:
Basic requirements in category social competences:
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 PRK |
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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).
Sem. | TK | The content | realized in | MEK |
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The type of classes | The work before classes | The participation in classes | The work after classes |
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Lecture (sem. 1) | contact hours:
9.00 hours/sem. |
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Project/Seminar (sem. 1) | contact hours:
18.00 hours/sem.. |
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Advice (sem. 1) | |||
Credit (sem. 1) |
The type of classes | The way of giving the final grade |
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Lecture | |
Project/Seminar | |
The final grade |
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
1 | L. Bartoszek; M. Chutkowski; P. Koszelnik; M. Miąsik | The influence of the physico-chemical composition of bottom sediments on their sorption capacity in relation to phosphates | 2023 |
2 | M. Chutkowski; I. Opaliński; M. Przywara; R. Przywara; W. Zapała | Influence of Moisture Content and Composition of Agricultural Waste with Hard Coal Mixtures on Mechanical and Rheological Properties | 2023 |
3 | M. Chutkowski; J. Czarnota; T. Galek; S. Gubernat; J. Gumieniak; P. Koszelnik; A. Kramek; A. Masłoń; M. Tupaj | Removal of Phosphorus with the Use of Marl and Travertine and Their Thermally Modified Forms—Factors Affecting the Sorption Capacity of Materials and the Kinetics of the Sorption Process | 2023 |
4 | M. Chutkowski; K. Leś; I. Opaliński; M. Piwódzka; M. Przywara | Poprawa właściwości przetwórczych naproksenu z wykorzystaniem metody mieszania interaktywnego | 2023 |
5 | M. Chutkowski; J. Kamińska; M. Przywara; W. Zapała; P. Ziobrowski | Studies on the Effects of Process Conditions on Separation of B1, B2 and B3 Vitamin Mixture Using HILIC and RPLC Chromatography | 2022 |
6 | M. Chutkowski; M. Przywara; R. Przywara; W. Zapała | Column Testing in Quantitative Determination of Raw Heparin in Porcine Intestinal Mucus Extracts by Liquid Chromatography – Preliminary Investigations | 2022 |
7 | M. Bańda; M. Chutkowski; E. Gondek; J. Horabik; A. Lisowski; M. Molenda; A. Oniszczuk; P. Parafiniuk; M. Stasiak; J. Wajs; J. Wiącek | Mechanical and Combustion Properties of Agglomerates of Wood of Popular Eastern European Species | 2021 |
8 | M. Chutkowski; K. Kaczmarski | Impact of changes in physicochemical parameters of the mobile phase along the column on the retention time in gradient liquid chromatography. Part A – temperature gradient | 2021 |
9 | M. Chutkowski; K. Leś; M. Olechowski; I. Opaliński; M. Przywara; M. Stasiak | Studies on Moisture Effects on Powder Flow and Mechanochemical Improvement of Powder Flowability | 2021 |
10 | M. Chutkowski; L. Zapała; W. Zapała; P. Ziobrowski | Analiza mechanizmu retencji kwercetyny w wybranych układach chromatografii oddziaływań hydrofilowych (HILIC) | 2021 |
11 | M. Chutkowski; M. Kosińska-Pezda; M. Przywara; L. Zapała; W. Zapała; P. Ziobrowski | Analysis of adsorption energy distribution in selected hydrophilic-interaction chromatography systems with amide, amine, and zwitterionic stationary phases | 2021 |
12 | M. Chutkowski; K. Kaczmarski | Note of solving Equilibrium Dispersive model with the Craig scheme for gradient chromatography case | 2020 |
13 | M. Chutkowski; L. Zapała; W. Zapała; P. Ziobrowski | Influence of Mobile Phase Composition and Temperature on the Retention Behavior of Selected Test Substances in Diol-type Column | 2020 |
14 | M. Chutkowski; M. Jakielaszek; W. Kokoszka; I. Skrzypczak; K. Wilk | Badanie i analiza parametrów gruntu podlegającego wymianie przy budowie składowiska odpadów w Paszczynie w odniesieniu do wymagań projektowych w ramach zadania \"Budowa składowiska odpadów w Paszczynie dla Gminy Dębica\" | 2020 |
15 | M. Chutkowski; M. Przywara; W. Zapała | Modelowanie i analiza płynięcia materiału rozdrobionego podczas ścinania w reometrze pierścieniowym z wykorzystaniem metody elementów dyskretnych | 2020 |
16 | M. Chutkowski; G. Król; M. Szukiewicz | Formation of dead zone in catalytic particles in catalysis and biocatalysis - New alternative method of determination | 2019 |
17 | Ł. Byczyński; M. Chutkowski; E. Ciszkowicz; M. Kosińska; K. Lecka-Szlachta; E. Woźnicka; L. Zapała; W. Zapała | Comparison of spectral and thermal properties and antibacterial activity of new binary and ternary complexes of Sm(III), Eu(III) and Gd (III) ions with N-phenylanthranilic acid and 1,10-phenanthroline | 2019 |