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Summary

Samenvatting Natuurkunde - Overzicht van alle formules (VWO) - Eindexamen

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Een duidelijk overzicht van alle natuurkunde formules. De formules staan op eindexamenonderwerpen (VWO) gesorteerd. Naast elke formule staat de betekenis van de symbolen met de eenheden. Eindexamenopgaven van natuurkunde zijn makkelijker te maken met de kennis van grootheden, eenheden en bijbehorende symbolen. Dit bestand kan dan ook gebruikt worden als een leidraad ter voorbereiding voor het eindexamen Natuurkunde.

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School year
6

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Uploaded on
February 22, 2019
Number of pages
7
Written in
2017/2018
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Summary

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Formules van Natuurkunde
Golven
Informatieoverdracht
Frequentie f = 1/T f = frequentie (Hz of wel s-1)
T = trillingstijd (s)
Golfsnelheid v = f ·λλ v = golfsnelheid (m/s)
f = frequentie (Hz)
λ = golflengte (m)
Veerkracht F = -C·λu F = kracht (N)
(harmonische trilling) -C = constante (N/m)
u = uitwijking (m)
Massa-veersysteem T = trillingstijd (s)
m =massa (kg)
C = veerconstante (N/m)
Faseverschil bij trilling Δφ = faseverschil
Δx = tijdsverschil (s)
T = trillingstijd (s)
Faseverschil golf Δφ = faseverschil
Δx = weglengteverschil (m)
λ = golflengte (m)
Maximale snelheid vmax = maximale snelheid (m/
(harmonische trilling) s)
A = amplitude (m)
T = trillingstijd (s)
Uitwijking u = uitwijking (m)
(harmonische trilling) of A = amplitude (m)
Niet uitrekenen van t als u u = A sin (2π·λf·λt) f = frequentie (Hz)
gegeven is t = tijd (s)
T = trillingstijd (s)
Lengte snaar of open buis L = n½·λλ L = lengte buis of snaar (m)
(twee vaste of twee open n = 1,2,3,…
uiteinden) λ = golflengte (m)
Lengte enkelgesloten buis L = (2n-1)·λ¼λλ L = lengte buis (m)
(een open en een gesloten n = 1,2,3,…
uiteinde) λ = golflengte (m)

Medische beeldvorming
Fotonenergie Ef = h·λf = h·λc/ λ Efoton = energie per foton (J)
h = 6,62606957·λ10-34 Js
Want c = f ٠ λ, dus f = c / λ f = frequentie (Hz)
c = lichtsnelheid (m/s)
2,9979·λ108
λ = golflengte (m)
Golflengte c=f٠ λ f = frequentie (Hz)
c = lichtsnelheid (m/s)
2,99792458·λ108m/s
λ = golflengte (m)
(radio)activiteit A = activiteit (Bq)
N = aantal kernen
t = tijd (s)
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