,Work Done
w= Fs
I 1
distance in the direction
constant of the force
F
to
i
i G) FASO
☒
- - -
- -
W= FS SO
☒
w
,Kinetic Energy
Ek
Energy / Ek 2hr
\Ep
Ek ✗ v2
Ek = tfmvz
Derivation
Ek → W
w= Fs ma
w= was
a- 0 v=v Vtu -1265
✓2=24
VI. =as
i. w=£mv2
, Potential
Energy
Gravitational
EPI Electrical
:
r*f¥¥
\
Elastic -
w= FS
A f
my h
i.
Ep =
mgh
w= Fs
I 1
distance in the direction
constant of the force
F
to
i
i G) FASO
☒
- - -
- -
W= FS SO
☒
w
,Kinetic Energy
Ek
Energy / Ek 2hr
\Ep
Ek ✗ v2
Ek = tfmvz
Derivation
Ek → W
w= Fs ma
w= was
a- 0 v=v Vtu -1265
✓2=24
VI. =as
i. w=£mv2
, Potential
Energy
Gravitational
EPI Electrical
:
r*f¥¥
\
Elastic -
w= FS
A f
my h
i.
Ep =
mgh