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Tardigrade
Question
Chemistry
As per de Broglie’s formula a macroscopic particle of mass 100 gm and moving at a velocity of 100 cm s-1 will have a wavelength of
Q. As per de Broglie’s formula a macroscopic particle of mass
100
g
m
and moving at a velocity of
100
c
m
s
−
1
will have a wavelength of
2544
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A
6.6
×
1
0
−
29
c
m
12%
B
6.6
×
1
0
−
30
c
m
22%
C
6.6
×
1
0
−
31
c
m
42%
D
6.6
×
1
0
−
32
c
m
25%
Solution:
According to de-Broglie, wavelength,
λ
=
m
v
h
Given,
m
=
100
g
,
v
=
100
c
m
s
−
1
and
h
=
6.6
×
1
0
−
34
J
−
s
=
6.6
×
1
0
−
27
er
g
−
s
On substituting values, we get
λ
=
100
×
100
6.6
×
1
0
−
27
=
6.6
×
1
0
−
31
c
m