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Understand and master the basics of the general laws of mechanics, thermodynamics, and wave fields, and electromagnetism.

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Degree competences to which the subject contributes

Others: Primer quadrimestre:

ANTONIO ISALGUE BUXEDA - 1

DIEGO ALEJANDRO OCHOA GUERRERO - 1 Coordinator: ANTONIO ISALGUE BUXEDA

Teaching unit: Academic year:

ECTS credits:

748 - FIS - Department of Physics 2017

BACHELOR'S DEGREE IN MARINE TECHNOLOGIES (Syllabus 2010). (Teaching unit Compulsory) BACHELOR'S DEGREE IN NAVAL SYSTEMS AND TECHNOLOGY ENGINEERING (Syllabus 2010). (Teaching unit Compulsory)

BACHELOR'S DEGREE IN MARINE TECHNOLOGIES/BACHELOR'S DEGREE IN NAVAL SYSTEMS AND TECHNOLOGY ENGINEERING (Syllabus 2016). (Teaching unit Compulsory)

9 Teaching languages: Catalan, Spanish

Degree:

Teaching staff

Specific:

Generical:

2. Understanding and mastering the basics of the general laws of mechanics, thermodynamics, fields and waves and electromagnetism and their application to problem solving pro principles of engineering.

3. Understanding and mastery of the basics of the general laws of mechanics, thermodynamics, and electromagnetism fields and waves and its application for solving problems of the technical field of naval engineering.

1. IDENTIFY I resoldre Capacitat PER L'Ambit problemes IN MARINA DE L'ENGINYERIA.

Capacitat per the plantejament i resolució of problemes de l'l'àmbit enginyeria assumint marina iniciatives, prenent decisions i aplicant solucions creatives in the marc d'a systematic methodology.

. Receive, understand and syntetize knowledge

.Set up and solve problems and questions related with the subject

.Develop rational thinking and criticism, and expose and support the reasonings (orally or in written form) Teaching methodology

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· Perform the tasks on schedule, according to the guidelines set by the teacher or tutor. Identify progress and the degree to which learning objectives.

Total learning time: 225h Hours large group: Hours medium group: Hours small group: Guided activities: Self study: 45h 36h 9h 9h 126h 20.00% 16.00% 4.00% 4.00% 56.00% Study load

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Mechanics.

Oscillations.

Learning time: 51h Learning time: 32h Theory classes: 12h Practical classes: 12h Laboratory classes: 2h Guided activities: 1h Self study : 24h Theory classes: 8h Practical classes: 6h Laboratory classes: 2h Self study : 16h

(ENG) Descripció del moviment: Cinemàtica. Moviment relatiu. Canvis de moviment: Dinàmica. Equacions de Newton. Estàtica del rígid. La rotació d'un sòlid. Introducció a la mecànica dels materials. Esforços en sòlids i en fluids. Estàtica de fluids. Fluids en moviment. Moviment amb fregament. Força, velocitat i potència. Estalvi energètic en el transport.

(ENG) Oscil·lacions. Moviment harmònic simple. Energia del moviment harmònic Moviment oscil·latori amortit. Temps de relaxació i factor de qualitat. Oscil·lacions forçades. Ressonància i amplada de banda.

Description: Description: Related activities: Related activities: (ENG) (ENG) Specific objectives: Specific objectives: (ENG) (ENG)

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Waves.

Thermodynamics and thermal properties of

matter.

Learning time: 50h Learning time: 40h Theory classes: 10h Practical classes: 10h Laboratory classes: 6h Self study : 24h Theory classes: 10h Practical classes: 8h Laboratory classes: 2h Self study : 20h

(ENG) Propagació d'ones. Equació d'ones. Ones mecàniques. Exemples: Ones en una corda, altres exemples. Ones harmòniques. Superposició. Ones estacionàries. Interferència i difracció. Energia i ones: Densitat d'energia i intensitat. So. Nivell de pressió sonora. Efecte Doppler.

(ENG) Calor, treball i temperatura. Sistemes termodinàmics, estat i equació d'estat. Canvis d'estat. Exemples: Àbac psicromètric. Estabilitat atmosfèrica. Introducció al transport de la calor. Llei de Newton del refredament d'un cos, conducció, convenció i radiació. Principis termodinàmics: Principi zero i Primer Principi. Segon principi: Màquines tèrmiques i cicles. Entropia. Potencials termodinàmics. Entalpia.

Description: Description: Related activities: Related activities: (ENG) (ENG) Specific objectives: Specific objectives: (ENG) (ENG)

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Electricity and magnetism.

Electromagnetic waves, light and properties.

Learning time: 32h Learning time: 20h Theory classes: 8h Practical classes: 6h Laboratory classes: 2h Self study : 16h Theory classes: 6h Practical classes: 4h Self study : 10h

(ENG) Conceptes de càrrega i de camp elèctric. Corrent elèctrica. Lleis bàsiques dels camps elèctrics i magnètics. Camp magnètic estàtic; fonts i efectes. Camps elèctric i magnètic, i materials. Inducció electromagnètica.

Generadors.

(ENG) Descripció de les ones electromagnètiques. Radiació electromagnètica i llum. Mesura i propietats de la llum. Els raigs de llum i la òptica. Radiació tèrmica, quantització i fenòmens relacionats.

Description: Description: Related activities: Related activities: (ENG) (ENG) Specific objectives: Specific objectives: (ENG) (ENG)

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The final degree will be given according to: Nfinal = 0,45 Npf + 0,25 Nlab + 0,30 Nparcials

The students that do not succeed, in the conditions determined by the University and the Faculty, may follow a re-evaluation, an exam (qualified as Nre) in a date determined by the faculty, and the final grade will be obtained as Nfinal= 0,75*Nre+0,25*Nlab

Where the Nlab is obtained from laboratory and simulators' activities, that migth be completed at the moment of the re-evaluation

Nfinal: final grade. Npf: final exercise.

Nlab: laboratory and simulators. Nparcials: partial exams.

Partials will last up to 3 h Qualification system

Regulations for carrying out activities

.Activities not performed by the student will not receive a grade

.A student will receive a grade of "Not presented" if the student do not perform tasks that add 35% or more of the total grade

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Basic:

Complementary:

Tipler, Paul Allen; Mosca, Gene. Física para la ciencia y la tecnología. 6a ed. Barcelona: Reverté, 2010. ISBN 9788429144260. Alonso, Marcelo; Finn, Edward J. Física. México: Addison-Wesley Longmann, 2000. ISBN 9684444265.

Burbano, S.; Burbano, E.; Gracia, C. Física general. 32a ed. Madrid: Tebar, 2003. ISBN 8495447827.

Gettys, W. Edward; Keller, Frederick J.; Skove, Malcolm J. Física para ingeniería y ciencias. 2a ed. México: McGraw-Hill, 2005. ISBN 9789701048894.

Tipler, Paul Allen; Mosca, Gene. Physics for scientists and engineers. 6th ed. New York: W. H. Freeman and Company, 2008. ISBN 9781429201339.

Dias de Deus, J [et al.]. Introducción a la física. 2a ed. Madrid: McGraw-Hill, 2001. ISBN 8448131908. Cutnell, John D.; Johnson, Kenneth W. Física. 2a ed. México: Limusa Wiley, 2004. ISBN 9681864514.

Sears, W [et al.]. Física universitaria. vol. 1. 12a ed. México: Pearson Educación, 2009. ISBN 9786074422887. González, Félix A. La física en problemas. Madrid: Tebar Flores, 1995. ISBN 8473601416.

Resnick, Resnick; Halliday, David; Krane, Kenneth S. Física. 4a ed. México: CECSA, 2002. ISBN 9702402573.

Martínez Sancho, Vicent. Fonaments de física. 2a ed. Barcelona: Enciclopèdia Catalana, 1991. ISBN 8477390010 (V.1). Giancoli, Douglas C. Física : principios con aplicaciones. 2a ed. México: Prentice-Hall Hispanoamericana, 1997. ISBN 9688808989.

Wilson, Jerry D.; Buffa Anthony J.; Lou, Bo. Física. 5a ed. México: Pearson educación, 2003. ISBN 9702604257. Blatt Frank J. Fundamentos de física. 3a ed. México: Prentice-Hall Hispanoamericana, 1991. ISBN 9688801933. Garcia-Morato, A. Física : leyes, fórmulas y ecuaciones. Madrid: L'autor, 2006. ISBN 8493478504.

Garcia-Maroto A. Física : 200 problemas útiles. Madrid: L'autor, 2006. ISBN 8493478512. Bueche, F. Física general. 10a ed. Mexico: McGraw-Hill, 2007. ISBN 9789701061619.

Tippens, Paul E. Física: conceptos y aplicaciones. 7a ed. Mexico: McGraw- hill, 2007. ISBN 9701062604. Schaum, Daniel. Teoría y problemas de física general. Mexico: McGraw-Hill, 1970. ISBN 9684512074.

Pérez García, Víctor M.; Vázquez Martínez, Luis; Fernández-Rañada, Antonio. 100 Problemas de mecánica. Madrid: Alianza, 1997. ISBN 8420686360.

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