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Chemistry A

Code: QAA03     Sigla: QA

Áreas Científicas
Classificação Área Científica
CNAEF Chemistry

Ocorrência: 2021/2022 - 1S

Ativa? Yes
Unidade Responsável: Departamento de Sistemas e Informática
Curso/CE Responsável: Professional Technical Higher Education Courses in Environment and Safety Management

Ciclos de Estudo/Cursos

Sigla Nº de Estudantes Plano de Estudos Anos Curriculares Créditos UCN Créditos ECTS Horas de Contacto Horas Totais
QAA 24 Plano_estudos_2018_19 1 - 6 60 162

Docência - Responsabilidades

Docente Responsabilidade
Carla Alexandra Gamelas Albuquerque Pinto Reis

Docência - Horas

Theorethical and Practical : 4,00
Type Docente Turmas Horas
Theorethical and Practical Totais 2 8,00
Carla Alexandra Gamelas Albuquerque Pinto Reis 4,00
Alexandra Sofia Baptista Lança 4,00
Mais informaçõesA ficha foi alterada no dia 2021-10-18.

Campos alterados: Obtenção de frequência, Observações, Programa

Língua de trabalho

Portuguese

Objetivos

General objectives:

-Give the student an overview of the fundamentals of Chemistry in the context of their basic training;
-Give the student the essential foundations for understanding the analytical methods applied to the Environment;
-Lead the student to understand the relevance of Chemistry in natural systems and environmental technologies.

Resultados de aprendizagem e competências

Specific objectives - skills to be acquired (knowledge, skills and attitudes):

-Know the units of concentration of solutions;
-Be able to make the necessary calculations for the preparation of solutions;
-Be able to prepare solutions in the laboratory;
-Be able to make stochiometric calculations, determining quantities of necessary reagents and obtained products.
-Know the difference between irreversible reaction and chemical equilibrium and know the various types of chemical equilibrium;
-Be able to determine the pH of acid and base solutions (strong and weak);
-Be able to make acid-base titrations, choose a appropriate indicator and determine the concentration of the titrated solution;
-Be able to determine the solubility of a salt;
-To be able to work in the laboratory, complying with safety rules.

Modo de trabalho

Presencial

Pré-requisitos (conhecimentos prévios) e co-requisitos (conhecimentos simultâneos)

Mathematics Skills (Secondary Education or equivalent)

Programa

1. Concentration of Solutions
Concentration units. Preparation of solutions.

2. Stochimetric Calculations
Balancing chemical equations. Limiting reagent. Reaction yield.

3. Acid-base equilibrium
Acid and base concepts. pH scale. Water autoprotolysis. Anfotherism. Strength of acids and bases, Ka and Kb. Determination of the pH of acid and base solutions. Buffer solution.
Acid-base titrations, titration curve, equivalence point and acid-base indicators.

4. Solubility equilibrium
Solubility product. Determination of the solubility of a salt. Effect of the common ion.

5. Oxidation-reduction and Electrochemistry
Balancing redox equations. Oxidation numbers. Standard reduction potential and reference electrodes. Galvanic and electrolyte cells. Cell potential difference.

6. Chemical bond (if possible)
Writing Lewis formulas. Theory of Repulsion of Electronic Pairs of the Valence Layer and molecular geometry.

Bibliografia Obrigatória

D. Reger, S. Goode, E. Mercer; Química: Princípios e Aplicações, Fundação Calouste Gulbenkian. ISBN: 972-31-0773-2

Bibliografia Complementar

R. Chang; Química, McGraw-Hill, 2005. ISBN: 84-481-4527-5

Métodos de ensino e atividades de aprendizagem

The classes have theoretical-practical typology, since it is a curricular unit with the objective of operationalization of concepts. The participated and interactive exhibition method is adopted, even in the introduction of theoretical concepts. It seeks to lead students to draw conclusions and learn through the active resolution of exercises, guiding them in this process.
The curricular unit has an essential laboratory component, intending to illustrate in practice the theoretical concepts. In laboratory classes, students perform experimental work according to the provided protocols, and then prepare a questionnaire or report. In these classes the experimental method and group work are put into practice.

Tipo de avaliação

Distributed evaluation with final exam

Componentes de Avaliação

Designation Peso (%)
Teste 70,00
Trabalho laboratorial 30,00
Total: 100,00

Componentes de Ocupação

Designation Tempo (Horas)
Estudo autónomo 72,00
Frequência das aulas 60,00
Trabalho laboratorial 30,00
Total: 162,00

Obtenção de frequência

Distributed evaluation without the obligation of final examination
Continuous evaluation, by 3 tests, assuming a minimum attendance of 85 % to the classes of the curricular unit.

2nd test: November 12
3rd test: December 17
4th test: January 28
(these dates need approval by the Pedagogical Council)

THEORETICAL-PRACTICAL MARK
Approval in the theoretical-practical component can be obtained by continuous evaluation (3 tests) or by examination.

The student whose arithmetic mean of the tests is greater than or equal to 9.5 val., will be approved in the theoretical-practical component, provided that in none of the tests the mark was less than 8.0 val.

LABORATORY MARK
Minimum laboratory mark: 9.5 val.

FINAL MARK
The final mark is the weighted average of the laboratory mark (30%) and the theoretical-practical mark (70%).

The students with recognized Worker-Student status who missed more than 1 laboratory work will necessarily perform in the final exam, a group specifically related to the laboratory component of the curricular unit.
The students who choose to perform continuous evaluation (tests) and who missed more than 1 laboratory work should also perform this specific group on the laboratory component of the curricular unit, on the date of Normal Season exam.

-To perform the curricular unit in continuous evaluation, the student must have a minimum attendance to classes of 85%.

-Without the frequency of laboratory classes and delivery of the respective reports/questionnaires, the student will not be able to obtain approval in the curricular unit. A MAXIMUM of 1 missed Lab class is allowed.

Fórmula de cálculo da classificação final

FM = 0.70*TM + 0.30*LM

TM = (T1+T2+T3)/3

FM - Final mark
TM - average of test marks
LM - Laboratory mark

Provas e trabalhos especiais

not applicable

Trabalho de estágio/projeto

not applicable

Avaliação especial (TE, DA, ...)

-Student Workers, High Competition Athletes, Association Leaders and Students under the Religious Freedom Law must send an email to the Professor (carla.gamelas@estsetubal.ips.pt), until the second week of the semester, to present their relevant specificities, in accordance with the provisions of their diplomas.

Melhoria de classificação

The student may perform an improvement in the classification in the Appeal Season exam, and must enroll in the Academic Division.

Observações

-Clarification of Doubts (Carla Gamelas, F205): , h-h.
IMPORTANT: students who wish to clarify doubts, should send email to the Professor (carla.gamelas@estsetubal.ips.pt) until the previous business day.

It can be scheduled clarification of doubts online (via ZOOM), in a day / hour to be combined with the student.

-The support materials (slides, exercise sheets and laboratory protocols) can be found in Moodle 2021/2022.

-The use of mobile phones during classes and evaluation moments is prohibited.

-Students who wish to consult the evaluation tests (test or exam) must send an email to the Responsible Professor (carla.gamelas@estsetubal.ips.pt) until one week before the next evaluation moment, expressing the intention to exercise this right.
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