12.3 The measured shaft torque on the turbomachine shown in Figure is -60 N.m when the...
el shaft shown in the below Figure, compute the angle of twist (0) of one endr a torque of 96 N.m is applied uniformly along the length. 50 cm 50 cm 45 mm+ 38 mm dia. Section A-A Section B-IB
el shaft shown in the below Figure, compute the angle of twist (0) of one endr a torque of 96 N.m is applied uniformly along the length. 50 cm 50 cm 45 mm+ 38 mm dia. Section A-A Section B-IB
A compound epicyclic gear train is shown in the Figure. The
shaft P is driven a 4000 rpm in the clockwise direction by a motor
of power rating of 10W . The annulus A2 is fixed. The
number of teeth in the gears are , S1,28;
S2,21; A1,72 and A2,99 .
Determine:
The magnitude and direction of the angular velocity of the
shaft Q
The torque required to fix the annulus, A2
A, A₂ P, P2 P P. z S
A compound epicyclic gear train is shown in the Figure. The
shaft P is driven at 2500 rpm in the clockwise direction by a motor
of power rating 8 kW. The sun S2 is fixed. The number of teeth in
the gears are S1, 34; S2, 21; A1, 86 and A2, 73. Determine
The magnitude and direction of the angular velocity of the
shaft Q and
The torque required to fix the sun, S2
A, Q P S, 5,
A square wire frame shown in the figure is on the x=0 plane at
t=0. Then it starts to move with a velocity of v =
vo.y.
The magnetic flux density is measured as B = Bo =
siny.cos2t.x
+ sinz.sin2t.y.
Find the voltage induced on the frame.
(The edge length of square frame is a.)
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Please answer ALL PARTS (i, ii, iii, and iv) of
the question with clear working out. Will give a good rating!
Thank you!
Answers:
(i)
(ii)
(iii)
(iv)
Q4 The Crankshaft bearing of an automobile engine is lubricated by oil with viscosity of 9.6 10-3 Ns/m" and density of 920 kg/m3. The diameter of the bearing is 0.0762 m and its clearance is a -3.175 x 105 m. The shaft is 3.175 x 102 m long The oil flow in...
Consider the mass spectrometer shown schematically in the figure
below. The magnitude of the electric field between the plates of
the velocity selector is 3.00 103 V/m, and the magnetic field in
both the velocity selector and the deflection chamber has a
magnitude of 0.040 0 T. Calculate the radius of the path for a
singly charged ion having a mass m = 1.82 10-26 kg
Consider the mass spectrometer shown schematically in the figure below. The magnitude of the...
A 3-kg disk A is mounted on arm BC, which has a negligible mass. A torque of M = (5e0.5t) N.m, where t is in seconds, is applied to the arm at C. Suppose that I = 220 mm . (Figure 1) Figure < 1 of 1 2 60 mm M = (5ea5) N.m с Part A Determine the magnitude of the angular velocity of BC in 2 s starting from rest. Solve the problem assuming that the it rotates...
Figure 4 Water pipes taking water from
Trawsfynydd Lake to Maentwrog hydroelectric power station
Question 3
This question is worth 12 marks.
The water from the lake in Question 2 flows along the river and
enters a hydroelectric power plant through large inlet pipes with a
circular cross-section of internal diameter , similar to those
shown in Figure 4.
Figure 4 Water pipes taking water from
Trawsfynydd Lake to Maentwrog hydroelectric power station
a.Explain why the velocity of the water...
We were unable to transcribe this imageTwo solid steel shafts are fitted with flanges that are then connected by bolts as shown. The bolts are slightly undersized and permit a 1.5 rotation of one flange with respect to the other betore the flanges begin to rotate as a single unlt. Knowing that G 77.2 GPa, determine the maximum shearing stress in each shaft when a torque T of magnitude 600 N-m is applled to the flange Indicated The torque T...
A steam power plant operates on an ideal Rankine cycle with two
of its feedwater heater closed as shown in the figure below and
with a net power output of 105MW. The mass flow rate of the steam
is 70kg/s and enters the high-pressure turbine at 6MPa and
and leaves at 1.5 Mpa. a fraction of x of steam is extracted at
this pressure to the closed feedwater. a fraction of y of steam is
extracted from the second stage...