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Samenvatting Conceptuele Natuurkunde Met Technische Toepassingen (D0H021a-2122)

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Volledige samenvatting van het vak conceptuele natuurkunde met technische toepassingen

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  • January 6, 2022
  • 38
  • 2021/2022
  • Summary
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CONCEPTUELE NATUURKUNDE MET
TECHNISCHE TOEPASSINGEN




KU LEUVEN 2021-2022

,INHOUDSOPGAVE

2.1 snelheid ........................................................................................................................................................ 5

2.2 versnelling ................................................................................................................................................... 5

2.3 beweging met een constante versnelling ..................................................................................................... 6

2.4 vrij vallende voorwerpen ............................................................................................................................. 6

4.1 kracht............................................................................................................................................................ 7

4.2 de eerste bewegingswet van Newton.......................................................................................................... 7

4.3 massa ........................................................................................................................................................... 7

4.4 de tweede bewegingswet van newton ........................................................................................................ 7

4.5 de derde bewegingswet van Newton .......................................................................................................... 7

4.6 gewicht: zwaartekracht en de normaalkracht ................................................................................................... 8

5.1 toepassingen van de wetten van newton met wrijving............................................................................... 8

5.2 eenparige cikelvormige beweging ............................................................................................................... 8
5.2.1 kinematica ......................................................................................................................................................................... 8
5.2.2 dynamica ........................................................................................................................................................................... 8

5.3 niet-eenparige cikelvormige beweging ........................................................................................................ 9

6.1 de wet van de universele zwaartekracht van Newton ................................................................................ 9

6.2 vectorvorm van de wet van de universele zwaartekracht ........................................................................... 9

6.3 DE ZWAARTEKRACHT VLAK BIJ HET OPPERVLAK VAN DE AARDE ........................................................ 10

7.1 ARBEID DIE DOOR EEN CONSTANTE KRACHT VERRICHT WORDT (si-eenheid: J) ................................... 10

7.2 HET INWENDIG PRODUCT VAN TWEE VECTOREN .................................................................................... 10

7.3 ARBEID DIE DOOR EEN VARIABELE KRACHT VERRICHT WORDT ............................................................. 10
7.3.1 ARBEID DIE DOOR EEN VEER VERRICHT WORDT ................................................................................................. 10

7.4 PRINCIPE VAN ARBEID EN KINETISCHE ENERGIE ..................................................................................... 10

8.1 conservatieve en niet conservatieve krachten ........................................................................................... 11

8.2 Potentiële energie (si-eenheid: j) ................................................................................................................ 11
8.2.1 potentiële energie in het zwaarteveld ......................................................................................................................... 11
8.2.2 potentiële energie in het algemeen ............................................................................................................................. 12
Potentiële energie als gevolg van elastische vervorming ................................................................................................... 12

8.3 Mechanische energie en behoud daarvan ................................................................................................. 12

,8.4 de wet van behoud van energie ................................................................................................................ 12

8.8 vermogen (si-eenheid: Watt) ...................................................................................................................... 12

9.1 impuls en relatie de relatie met kracht ....................................................................................................... 13

9.2 behoud van impuls .................................................................................................................................... 13

9.4 behoud van energie en impuls bij botsingen............................................................................................. 13

9.5 elastisch botsingen in één dimensie .......................................................................................................... 13

9.6 niet-elastische botsingen ............................................................................................................................ 13

9.8 massamiddelpunt (mm) ............................................................................................................................. 14

10.1 Grootheden bij rotatie – rotationele kinematica ....................................................................................... 14

10.2 vectoriële aard van rotatiegrootheden – rotationele kinematica.............................................................. 15

10.3 constante hoekversnelling – rotationele kinematica ................................................................................ 15

10.4 krachtmoment – rotationele dynamica..................................................................................................... 15

10.5 rotationele dynamica; krachtmoment en rotationele traagheid ............................................................... 15

10.7 traagheidsmomenten bepalen ................................................................................................................. 15

10.8 rotationele kinetische energie .................................................................................................................. 16

10.9 rotationele plus translationele beweging; rollen ..................................................................................... 16

11.1 Uitwendig vectorproduct; krachtmoment als een vector .......................................................................... 16

11.2 impulsmoment van een puntmassa ......................................................................................................... 16

11.3 impulsmoment en krachtmoment voor een systeem van puntmassa’s, algemene beweging................. 16

11.4 impulsmoment en krachtmoment van een star voorwerp ....................................................................... 17

11.5 Wet van behoud van impulsmoment ....................................................................................................... 17

12.1 de voorwaarden voor evenwicht ............................................................................................................. 17

12.2 stabiliteit en balans .................................................................................................................................. 17

12.3 elasticiteit; materiaalspanning en vervorming ......................................................................................... 17
12.3.1 elasticiteit en de wet van hooke ................................................................................................................................ 17
12.3.2 elasticiteitsmodulus ...................................................................................................................................................... 18
12.3.3 spanning en vervorming ............................................................................................................................................. 18

13.1 dichtsheid en soortelijk gewicht ............................................................................................................... 18

13.3 druk in vloeistoffen .................................................................................................................................. 18
13.3.1 het verband tussen druk en kracht ............................................................................................................................ 18

, 13.3.1 druk in vloeistoffen ..................................................................................................................................................... 19

13.4 atmosferische druk en manometerdruk .................................................................................................... 19

13.5 de wet van pascal .................................................................................................................................... 19

13.6 meten van druk; nanometer en barometer ............................................................................................... 20

13.7 opwaartse kracht en de wet van archimedes .......................................................................................... 20

14.1 trillingen van een veer ............................................................................................................................. 21

14.2 enkelvoudige harmonische beweging ..................................................................................................... 21

14.3 energie in de enkelvoudige harmonische oscillator................................................................................. 22

14.4 DE ENKELVOUDIGE SLINGER ................................................................................................................... 22

14.5 Gedempte harmonische beweging .......................................................................................................... 22

15.1 eigenschappen van een golfbeweging .................................................................................................... 22

15.2 typen golven: transversale en longitudinale golven ............................................................................... 23

15.3 Energietransport door golven ................................................................................................................... 24

15.4 wiskundige voorstelling van een lopende golf (harmonisch) ................................................................. 24

15.6 het superpositiebeginsel .......................................................................................................................... 24

15.7 reflectie en transmissie............................................................................................................................. 25

15.8 Interferentie .............................................................................................................................................. 25

15.9 staande golven; resonantie ...................................................................................................................... 25

15.10 resonantie .............................................................................................................................................. 26

21.1 statische elektriciteit; elektrische lading en het behoud daarvan ............................................................. 26

21.2 elektrische lading in een atoom ............................................................................................................... 26

21.3 isolatoren en geleiders ............................................................................................................................. 26

21.4 geïnduceerde lading: de elektroscoop...................................................................................................... 27

21.5 De wet van Coulomb (si-eenheid = coulomb) ......................................................................................... 27

21.6 het elektrisch veld (si-eenheid = newton/coulomb)................................................................................. 28

21.7 berekeningen van het elektrisch veld voor continue ladingsverdelingen ................................................ 28

21.8 ELEKTRISCHE VELDLIJNEN ....................................................................................................................... 28

21.9 elektrische velden en geleiders ................................................................................................................ 29

21.10 beweging van een geladen deeltje in een elektrisch veld ..................................................................... 29

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