Course: Practicals in Analytical Chemistry

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Course title Practicals in Analytical Chemistry
Course code ACH/ACC
Organizational form of instruction Exercise
Level of course Bachelor
Year of study not specified
Semester Summer
Number of ECTS credits 5
Language of instruction Czech
Status of course Compulsory, Compulsory-optional
Form of instruction Face-to-face
Work placements This is not an internship
Recommended optional programme components None
Lecturer(s)
  • Nytka Marianna, M.Sc.
  • Kučerová Pavla, RNDr. Ph.D.
  • Trach Kateryna, Mgr.
  • PRYSTOPIUK Oleksandr, Mgr.
  • Zemek Vojtěch, Mgr.
  • Pluháček Tomáš, RNDr. Ph.D.
  • Součková Jitka, Mgr. Ph.D.
  • Bednář Petr, doc. RNDr. Ph.D.
  • Papoušková Barbora, RNDr. Ph.D.
  • Skopalová Jana, RNDr. Ph.D.
  • Ševčík Juraj, prof. RNDr. Ph.D.
  • Kurka Ondřej, RNDr. Ph.D.
  • Švecová Petra, Mgr.
  • Krejčí Petra, Mgr.
  • Mácha Hynek, Mgr.
  • Jagošová Klára, Ing.
  • Nádvorníková Jana, Mgr.
  • Houšť Jiří, Mgr.
  • Jerga Radek, Mgr.
  • Dostál Štěpán, Mgr.
  • Žingor Zbyněk, Mgr.
  • Pechancová Radka, RNDr. Ph.D.
  • Pauk Volodymyr, Mgr. Ph.D.
  • Vysloužilová Dominika, Mgr.
  • Gregar Filip
  • Baron Daniel, Mgr. Ph.D.
  • Kučera Lukáš, RNDr. Ph.D.
  • Gavlová Anna, Mgr.
Course content
Analytical reactions of inorganic cations in characteristic groups; Selective reactions of cations; Analytical reactions of inorganic anions in characteristic groups; Selective reactions of anions; Analysis of mixtures of cations and anions; Proof of a hetero-atom in organic compounds; Basic operations and calculations in quantitative chemical analysis; Gravimetric determination of Fe3+, Ag+, Ba2+, Al3+, Ni2+, Cl-, SO42-, PO43-; Volumetric titrations: neutralization, complexometric, precipitating, redox (manganometry and iodometry); Ion exchange chromatography, Determination of the total sodium content (alkalimetry), Separation and chelatometric determination of Cu and Zn; UV/VIS spectrophotometry, Determination of Mn after oxidation using a periodate, Determination of Fe as thiocanate complex; Determination of Ni using biacetyldioxime in the presence of oxidation agent; Coulommetry and electrogravimetry (determination of Cu); Thin layer chromatography (identification of phenols in mixture). Demonstration of other instrumental techniques (AAS, IR, GC, HPLC, CE, ITP, polarography, combined techniques - HPLC/MS, GC/MS). Analysis of real samples: determination of Fe, Ca, Ni using different techniques.

Learning activities and teaching methods
Observation, Training in job and motor Skils
  • Attendace - 78 hours per semester
  • Homework for Teaching - 39 hours per semester
  • Preparation for the Course Credit - 33 hours per semester
Learning outcomes
The aim is to acquire practical skills for proof and determination of analytes.
Apply and practice fundamental analytical procedures, modify procedures for the basic analytical determinations
Prerequisites
The knowledge of basics of analytical chemistry is recommended.

Assessment methods and criteria
Written exam, Student performance

For passing the subject student has to fulfill the condition of 100% attendance in the lectures, make all the requested analytical work in correct way and elaborate suitable laboratory protocols. Student has to pass the writtent final test ( 50% of total points) as well.
Recommended literature
  • 1. návody ke cvičení - dostupné u garanta cvičení..
  • 2. Dostál V., Šimek J., Důkaz některých anorganických iontů vybranými analytickými reakcemi, Skripta UP Olomouc 1993..
  • 3. Fogl J. a kol., Návody pro laboratorní cvičení z analytické chemie I., skripta VŠCHT Praha 2000.
  • 4. Havel J., Novotný I., Vrchlabský M. Základy analytické chemie kvantitativní. UJEP, Brno, 1981..
  • 5. Okáč A. Analytická chemie kvalitativní. ČSAV Praha, 1961..
  • 6. Churáček J., Analytická separace látek, SNTL, Praha 1990..
  • 7. Mermet J.M., Otto M., Widmer H.M., Analytical Chemistry, Wiley-VCH, Weinheim 1998..
  • 8. Instructions to particular lectures - available at guarantee of the laboratory lectures..


Study plans that include the course
Faculty Study plan (Version) Category of Branch/Specialization Recommended year of study Recommended semester
Faculty: Faculty of Science Study plan (Version): Chemistry for Education (2019) Category: Chemistry courses 2 Recommended year of study:2, Recommended semester: Summer
Faculty: Faculty of Science Study plan (Version): Biotechnology and Genetic Engineering (2022) Category: Chemistry courses 2 Recommended year of study:2, Recommended semester: Summer
Faculty: Faculty of Science Study plan (Version): Biochemistry (2022) Category: Chemistry courses 2 Recommended year of study:2, Recommended semester: Summer
Faculty: Faculty of Science Study plan (Version): Chemistry (2019) Category: Chemistry courses 2 Recommended year of study:2, Recommended semester: Summer
Faculty: Faculty of Science Study plan (Version): Bioorganic Chemistry and Chemical Biology (2020) Category: Chemistry courses 2 Recommended year of study:2, Recommended semester: Summer
Faculty: Faculty of Science Study plan (Version): Bioinorganic Chemistry (2021) Category: Chemistry courses 2 Recommended year of study:2, Recommended semester: Summer
Faculty: Faculty of Science Study plan (Version): Nanomaterial Chemistry (2024) Category: Chemistry courses 2 Recommended year of study:2, Recommended semester: Summer
Faculty: Faculty of Science Study plan (Version): Chemistry - Analytical Specialist (2021) Category: Chemistry courses 1 Recommended year of study:1, Recommended semester: Summer