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Showing results 1-9 of 9 on page 1 of 1.
Title
(created
)
Formula
E
=
q
U
E = qU
E
=
q
U
Exercises
#
Owner
Attributes
Action
AG
Elektrisches Potential, kinetische Energie und gleichförmige Bewegung
E
=
q
U
E = qU
E
=
q
U
s
=
v
t
s = vt
s
=
v
t
E
k
i
n
=
1
2
m
v
2
E_{\rm \scriptscriptstyle kin} = \dfrac12 mv^2
E
kin
=
2
1
m
v
2
View Exercises
1
TeX
\TeX
T
E
X
ercises
https://texercises.raemilab.ch/collection/elektrisches-potential-kinetische-energie-und-gleichformige-bewegung/
AG
Elektrische potentielle Energie und Leistung
E
=
q
U
E = qU
E
=
q
U
P
=
E
t
=
W
t
=
Q
t
P = \dfrac{E}{t} = \dfrac{W}{t} = \dfrac{Q}{t}
P
=
t
E
=
t
W
=
t
Q
View Exercises
3
TeX
\TeX
T
E
X
ercises
https://texercises.raemilab.ch/collection/elektrische-potentielle-energie-und-leistung/
AG
Bestrahlung mit Elektronen
E
=
q
U
E = qU
E
=
q
U
D
=
E
m
D = \dfrac{E}{m}
D
=
m
E
H
=
w
D
H = wD
H
=
w
D
View Exercises
5
TeX
\TeX
T
E
X
ercises
https://texercises.raemilab.ch/collection/bestrahlung-mit-elektronen/
AG
Beschleunigungsspannung und Kreisbahn
E
=
q
U
E = qU
E
=
q
U
E
k
i
n
=
1
2
m
v
2
E_{\rm \scriptscriptstyle kin} = \dfrac12 mv^2
E
kin
=
2
1
m
v
2
F
=
q
v
B
F = qvB
F
=
q
v
B
F
=
m
v
2
r
F = m\dfrac{v^2}{r}
F
=
m
r
v
2
View Exercises
6
TeX
\TeX
T
E
X
ercises
https://texercises.raemilab.ch/collection/beschleunigungsspannung-und-kreisbahn/
AG
Kinetische Enerige (relativistisch) und elektrische potentielle Energie
E
=
q
U
E = qU
E
=
q
U
E
k
=
E
−
E
0
E_k = E-E_0
E
k
=
E
−
E
0
View Exercises
4
TeX
\TeX
T
E
X
ercises
https://texercises.raemilab.ch/collection/kinetische-enerige-relativistisch-und-elektrische-potentielle-energie/
AG
Teilchen beschleunigen (relativistisch)
E
=
q
U
E = qU
E
=
q
U
E
k
=
(
γ
−
1
)
m
c
2
E_k = (\gamma-1)mc^2
E
k
=
(
γ
−
1
)
m
c
2
γ
=
1
1
−
v
2
c
2
\gamma = \frac{1}{\sqrt{1-\frac{v^2}{c^2}}}
γ
=
1
−
c
2
v
2
1
View Exercises
3
TeX
\TeX
T
E
X
ercises
https://texercises.raemilab.ch/collection/teilchen-beschleunigen-relativistisch/
AG
Geschwindigkeitsfilter
E
=
q
U
E = qU
E
=
q
U
v
=
E
B
v = \frac{E}{B}
v
=
B
E
E
k
i
n
=
1
2
m
v
2
E_{\rm \scriptscriptstyle kin} = \dfrac12 mv^2
E
kin
=
2
1
m
v
2
View Exercises
14
TeX
\TeX
T
E
X
ercises
https://texercises.raemilab.ch/collection/geschwindigkeitsfilter/
TF
Elektrische potentielle Energie
E
=
q
U
E = qU
E
=
q
U
View Exercises
16
TeX
\TeX
T
E
X
ercises
https://texercises.raemilab.ch/collection/elektrische-potentielle-energie/
AG
Kinetische Energie und elektrische potentielle Energie / Beschleunigungsspannung
E
=
q
U
E = qU
E
=
q
U
E
k
i
n
=
1
2
m
v
2
E_{\rm \scriptscriptstyle kin} = \dfrac12 mv^2
E
kin
=
2
1
m
v
2
View Exercises
13
TeX
\TeX
T
E
X
ercises
https://texercises.raemilab.ch/collection/kinetische-energie-und-elektrische-potentielle-energie-beschleunigungsspannung/