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mathematics2 [2016/03/16 12:35] Gejza Dohnalmathematics2 [2017/05/08 13:08] Tomáš Bodnár
Řádek 11: Řádek 11:
 === Lecturers === === Lecturers ===
  
-[[gejza.dohnal@fs.cvut.cz|profRNDrGejza DohnalCSc.]],  Office: KN:B-205\\+[[Tomas.Bodnar@fs.cvut.cz|MgrIngTomáš BodnárPhD.]],  Office: KN:D-303\\
  
-   * lectures: Monday, 2:15 3:45 p.m. and 4:00 5:30 p.m+   * lectures: Monday, 12:30 14:00 and Tuesday 12:30 14:00
  
 [[tomas.neustupa@fs.cvut.cz|RNDr. Tomáš Neustupa, Ph.D.]],  Office: KN:B-214 [[tomas.neustupa@fs.cvut.cz|RNDr. Tomáš Neustupa, Ph.D.]],  Office: KN:B-214
  
-   * lectures: Tuesday, 2:15 3:45 p.m. and Friday 9:00 9:30 a.m. +   * lectures: Friday 9:00 10:30 and 10:45 12:15  
  
 +=== Exams ===
 +The exams from Mathematics II (level A and B) will be organized in the same way as in Mathematics I. There are several necessary conditions to be fulfiled by students in order to be admitted to the exam:
 +  * Student must have a //valid assessment// from tutorials registered in the electronic system KOS. (students without valid assessment can't subscribe for the exam)
 +  * Student has to //subscribe (register) in the KOS// system for the chosen date and level of the exam. (students who will be not subscribed for the exam in the KOS system can't participate in the exam)
 +  * Student should come to the exam //in time//, i.e. he/she should be present in the examination room at least 10 minutes before the official start of the exam. (students who will come late, will be not allowed to participate in the exam)
 +
 +These conditions will be followed strictly, without any exceptions.
  
 === Literature: === === Literature: ===
Řádek 26: Řádek 33:
 === Examples: === === Examples: ===
 The //Collection of examples from Mathematics II// written in Czech by authors E. Brožíková, M. Kittlerová and F. Mráz (2016) contains both examples and their solutions. Here you find several parts translated in English. The examples in English have the same numbering but they are without solutions (corresponding solution you can find in the Czech version, which is in the brackets). English translations will be added gradually. By the star (*) are denoted the examples, which go beyond the requirements of the exam this year.  The //Collection of examples from Mathematics II// written in Czech by authors E. Brožíková, M. Kittlerová and F. Mráz (2016) contains both examples and their solutions. Here you find several parts translated in English. The examples in English have the same numbering but they are without solutions (corresponding solution you can find in the Czech version, which is in the brackets). English translations will be added gradually. By the star (*) are denoted the examples, which go beyond the requirements of the exam this year. 
-  * {{::definit_integral.pdf|Rieman integral}} [{{::urcity_integral.pdf|Určitý integrál}}] +  * {{::definit_integral.pdf|Riemann integral}} [{{::urcity_integral.pdf|Určitý integrál}}] 
-  * Calculus - part 1 (partial derivatives, ...) [{{::definicni_obory.pdf|Diferenciální počet-část 1}}]  +  * {{::calculus1.pdf|Calculus - part 1}} (partial derivatives, ...) [{{::definicni_obory.pdf|Diferenciální počet-část 1}}]  
-  * Calculus-part 2 (gradient, diferential, directional derivative, etc.) [{{::diferencial.pdf|Diferenciální počet-část 2}}] +  * {{::calculus2.pdf|Calculus - part 2}} (gradient, diferential, directional derivative, etc.) [{{::diferencial.pdf|Diferenciální počet-část 2}}] 
   * {{::implicit_function.pdf|Implicit Functions}} [{{::implicitni_funkce.pdf|Implicitní funkce}}]   * {{::implicit_function.pdf|Implicit Functions}} [{{::implicitni_funkce.pdf|Implicitní funkce}}]
 +  * {{::extrems.pdf|Extrema}} [{{:extremy_funkci.pdf|Extrémy}}]
 +  * {{:double_integral.pdf|Double integral}} [{{::dvojny_intregral.pdf|Dvojný integrál}}]
 +  * {{::triple_integral.pdf|Triple integral}} [{{::trojny_integral.pdf|Trojný integrál}}]
 +  * {{::line_integral_1.pdf|Line integral}} [{{::krivkovy_integral_komplet.pdf|Křivkový integrál}}]
 +  * {{::surface_integral.pdf|Surface integral}} [{{::plosny_integral_skalarni_funkce.pdf|Plošný integrál}}]
 +  * Divergence theorem [{{::veta_gauss_ostrogradsky.pdf|Gaussova-Ostrogradského věta}}]
 +
  
  

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