Find the magnetic loop antenna efficiency coefficient
, where
, Given
, n = 240 , Q = 49.45, L = 160 mm, dia = 8 mm, lamda = 1299.15122
m


Find the magnetic loop antenna efficiency coefficient , where , Given , n = 240 , Q = 49.45, L = 160 mm, dia = 8 mm...
Find the force (in N) required to pull the loop from the
magnetic field with with a constant velocity of 5.5 m/s. The
uniform magnetic field is 0.75 T and the resistance of the wire is
1.2.
A. 0.499
B. 1.25
C. 0.315
D. 0.111
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Q- 3. The following features of a conical clutch are given: - Inside Diameter: 160 mm - Outside Diameter: 240 mm - Conical Angle: 18° - Friction Coefficient (f): 0.24 - The Torque to be transmitted (T): 240 N-m - Maximum Allowable Pressure (Pm): 2 bars Determine: a. Whether this clutch is suitable for that much torque transmission, b. If it is, the engagement force to activate the clutch.
Find the shear stress at A-A, B-B and C-C
Given
Neutral axis at 6.38 mm
V= - 1300 N
I = 23540 mm^4
thickness is 2mm
100 mm We were unable to transcribe this image
100 mm
QUESTION 3
An L-shaped rigid bar is attached with a pivot to a wall as
shown in the figure below. Assume that the L-shaped rigid bar is
massless. A mass of m = 9.1958 kg is attached to one end
of the rigid bar and the other end is supported by spring
k = 965.7083 N/m and damper c = 121.3183 Ns/m.
Determinate the steady state amplitude of mass m,
given
where F0 =417.8427 N, ω = 48.0443 rad/s, and...
d.) using the graph's slope - 32.7 - and the equation of the
slope
(where L (length of string) = 1 meter) determine the value of
and compare it to the given value which is 4.4g/m. (I think I'm
doing something wrong with the units because I'm getting over 50%
error?)
e.) Why is there a difference between the two numbers?
We were unable to transcribe this imageWe were unable to transcribe this imageMass (kg) sqrroot(m*g) (N) f (Hz) 18...
3. Electromagnetic Inductance. Consider a single loop under magnetic field. (a) If the area A = 0.012[m) is constant, but the magnetic field is increasing at the rate of 0.020 T/s), determine the induced emf. (Use Faraday's law; the induced emf in a loop equals the absolute value of the time rate of change of the magnetic flux through the loop.) (b) If the total resistance of the circuit is 5.0(82), find the induced current. (c) Suppose we change the...
Problem 8: A simplified model of a glider is where y is the flight path angle in radians, v is the airspeed in m/sec, n -L/mg is the load factor, L is the lift in Newtons, m is the mass in kg, and k 61.6594 and k 4.8747x103 are constants for the glider. (a) Given that y -0.15 rad, and the airspeed is 50.8691 m/sec, find the necessary load factor to maintain equilibriunm (b) Let the state vector be [7...
G Configuration A Configuration B Question 7 of 15 3 Points Scenario: Consider a magnetic arcuit with a mean length of 1 m A exto turn coil is wound around the left hand imb. The magnetic circuit is made from sacon steel core effects may not be ignored. The cross section surtom and mere is a 0 7 mm air gap in the circuit Find the current required in the coil to give a fux density of 1.40 Tin the...
Please read
entirely what follows:
Note that the
answers to this problem are given, they are the ONLY final answers
you should get. Please circle your final answers to indicate that
they are the same. I have including equation 8.55 and the entire
table A-5 so please use them (additional properties if needed are
at the far bottom so make sure to scroll all the way down). Please
write extremely clear so I can read your work step by step....
5.0. Protons with kinetic enerigy of 50 MeV are moving in the positive x direction and enter a magnetic B (0.5 T)k directed out of the plane of thepage ure extending from - 0 to -1 m as shown in 29.36. (a) Calculate the y compo nent of the protons momentum as they leave the magnetic field at m. (b) Find the angle a between the initial veloc- ity vector of the proton beam and the velocity vec tor after...