Plasma spraying is a process used for coating a material surface with a protective layer to prevent the material from degradation. In a plasma spraying process, the protective layer in powder form is injected into a plasma jet. The powder is then heated to molten droplets and propelled onto the material surface. Once deposited on the material surface, the molten droplets solidi1y and form a layer of protective coating. Consider a plasma spraying process using alumina ( k = 30 W/m .K, p = 3970 kg/m 3 , a n d c p = 800 J/kg .K) and powder that is injected into a plasma jet at T ∞ = 15,000 o C and h =10,000 W/m 2 .K . . The alumina powder is made of spherical particles with an average diameter of 60 μ m and a melting point at 2300°C. Determine the amount of time it would take for the particles, with an initial temperature of 20°C, to reach their melting point from the moment they are injected into the plasma jet.
Plasma spraying is a process used for coating a material surface with a protective layer to prevent the material from degradation. In a plasma spraying process, the protective layer in powder form is injected into a plasma jet. The powder is then heated to molten droplets and propelled onto the material surface. Once deposited on the material surface, the molten droplets solidi1y and form a layer of protective coating. Consider a plasma spraying process using alumina ( k = 30 W/m .K, p = 3970 kg/m 3 , a n d c p = 800 J/kg .K) and powder that is injected into a plasma jet at T ∞ = 15,000 o C and h =10,000 W/m 2 .K . . The alumina powder is made of spherical particles with an average diameter of 60 μ m and a melting point at 2300°C. Determine the amount of time it would take for the particles, with an initial temperature of 20°C, to reach their melting point from the moment they are injected into the plasma jet.
Plasma spraying is a process used for coating a material surface with a protective layer to prevent the material from degradation. In a plasma spraying process, the protective layer in powder form is injected into a plasma jet. The powder is then heated to molten droplets and propelled onto the material surface. Once deposited on the material surface, the molten droplets solidi1y and form a layer of protective coating. Consider a plasma spraying process using alumina
(
k
=
30
W/m
.K,
p
=
3970
kg/m
3
,
a
n
d
c
p
=
800
J/kg
.K)
and powder that is injected into a plasma jet at
T
∞
= 15,000
o
C and h =10,000 W/m
2
.K
.
. The alumina powder is made of spherical particles with an average diameter of 60
μ
m
and a melting point at 2300°C. Determine the amount of time it would take for the particles, with an initial temperature of 20°C, to reach their melting point from the moment they are injected into the plasma jet.
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Airplanes A and B, flying at constant velocity and at the same altitude, are tracking the eye
of hurricane C. The relative velocity of C with respect to A is 300 kph 65.0° South of West,
and the relative velocity of C with respect to B is 375 kph 50.0° South of East.
A
120.0 km
B
1N
1. Determine the relative velocity of B with respect to A.
A ground-based radar indicates that hurricane C is moving
at a speed of 40.0 kph due north.
2. Determine the velocity of airplane A.
3. Determine the velocity of airplane B.
Consider that at the start of the tracking expedition, the
distance between the planes is 120.0 km and their initial
positions are horizontally collinear.
4. Given the velocities obtained in items 2 and 3, should
the pilots of planes A and B be concerned whether the
planes will collide at any given time? Prove using
pertinent calculations. (Hint: x = x + vt)
0
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