A carbon nanotube is suspended across a trench of width s = 5 μm that separates two islands, each at T ∞ = 300 K . A focused laser beam irradiates the nanotube at a distance ξ from the left island, delivering q = 10 μW of energy to the nanotube. The nanotube temperature is measured at the midpoint of the trench using a point probe. The measured nanotube temperature is T 1 = 324.5 K for ξ 1 = 1.5 μm and T 2 = 326.4 K for ξ 2 = 3.5 μm . Determine the two contact resistances, R t , c , L and R t , c , R at the left and right ends of the nanotube, respectively. The experiment is performed in a vacuum with T sur = 300 K . The nanotube thermal conductivity and diameter are ken k cn = 3100 W/m ⋅ K and D = 14 nm, respectively.
A carbon nanotube is suspended across a trench of width s = 5 μm that separates two islands, each at T ∞ = 300 K . A focused laser beam irradiates the nanotube at a distance ξ from the left island, delivering q = 10 μW of energy to the nanotube. The nanotube temperature is measured at the midpoint of the trench using a point probe. The measured nanotube temperature is T 1 = 324.5 K for ξ 1 = 1.5 μm and T 2 = 326.4 K for ξ 2 = 3.5 μm . Determine the two contact resistances, R t , c , L and R t , c , R at the left and right ends of the nanotube, respectively. The experiment is performed in a vacuum with T sur = 300 K . The nanotube thermal conductivity and diameter are ken k cn = 3100 W/m ⋅ K and D = 14 nm, respectively.
Solution Summary: The author explains the thermal conductivities for both the laser irradiation locations.
A carbon nanotube is suspended across a trench of width
s
=
5
μm
that separates two islands, each at
T
∞
=
300
K
.
A focused laser beam irradiates the nanotube at a distance
ξ
from the left island, delivering
q
=
10
μW
of energy to the nanotube. The nanotube temperature is measured at the midpoint of the trench using a point probe. The measured nanotube temperature is
T
1
=
324.5
K
for
ξ
1
=
1.5
μm
and
T
2
=
326.4
K
for
ξ
2
=
3.5
μm
.
Determine the two contact resistances,
R
t
,
c
,
L
and
R
t
,
c
,
R
at the left and right ends of the nanotube, respectively. The experiment is performed in a vacuum with
T
sur
=
300
K
.
The nanotube thermal conductivity and diameter are ken
k
cn
=
3100
W/m
⋅
K
and
D
=
14
nm,
respectively.
Meh
Battery operated train
Coll CD Af Pair
160,000kg 0.0005 0.15 5m² 1.2kg/m³
19
7et nong
0.98 0.9 0.88
Tesla Prated
Tesla Trated Ywheel ng Jaxle.
270kW
440NM
0.45m 20
2
8.5kgm²
Consider a drive cycle of a 500km trip with 3 stops in
the middle. Other than the acceleration and deceleration
associated with the three stops, the tran maintains.
constant cruise speed velocity of 324 km/hr. The
tran will fast charge at each stop for 15 min at a
rate Peharge = 350 kW
(ผม
τ
(MN
15MIN
Stop
w charging
(350kW
GMIJ
restored during 15
minutes of fast charging at
Calculate the battery energy Pcharge = 350kW
Calculate the net energy gain per stop
t
64
Determice the total battery energy required Ebat
to complete the 500km trip with 3 stops.
etc
DO NOT COPY SOLUTION
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a. Find the poles of the closed loop transfer function for different values of K. How does the poles move as you change K?
b. Find the step response for different values of K and plot in MATLAB. What can you observe?
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Aswatan gas occupies a space of 0.3 millike cube at a pressure of 2 bar and temperature of 77 degree Celsius it is indicate at constant volume at pressure of 7 parts determine temperature at the end of process mass of a gas changing internal energy change in enthalpy during the process assume CP is equal to 10 1.005 CV is equal to 0.712 is equal to 287
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