We use the properties vector components and vector addition in
rectangular Cartesian coordinate system
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With the diagram and the data answer the question: What is the magnitude of A +B?...
With the diagram and the data below answer the following
question:
What is the magnitude of A +
B?
DATA:
θ1 =44.7o,
θ2 =148.4o,
A =5.3 cm,
B =7.9 cm.
ナ ty 0
With the diagram and the data answer the question: What is the
magnitude of A + B?
With the diagram and the data answer the question: What is the magnitude of A B? 7 DATA: θ1-40.10, θ2-136.70, A-5.1cm, B-9.0cm. This is an example of vector addition. You have to add the x and y components independently and then use the theorem of Pythagoras. The figure is not to scale. 1.90 104-5 cm
In the diagram below, |A| = 3.09, |B| = 4.08, θ1 = 20.0°, and θ2 = 40.8°. The two vectors lie in the x-y plane. We use the standard rectangular coordinate system, with +x to the right, +y vertically up, and +z coming out toward you. (a) What is the magnitude of the cross product of the two vectors? |A ⨯B (b) What is the direction of the cross product of the two vectors? +x −x +y −y +z −z...
A. This system of three forces is in equilibrium. What is the magnitude of T1?W=22 Nθ1=25°θ2=49°B. This system of four forces is in equilibrium.A=14°B=40°W=16.4 lbH=8.0 lbWhat is the magnitude of G?
The two vectors a and b in the figure have equal magnitude of 26 m and the angles are θ1=26° and θ2 = 112°. Find the x-component of their vector sum r.Find the y-component of their vector sum r.What is the magnitude of their vector sum r?Find the angle that their vector sum r makes with the positive direction of the x-axis.
The two vectors a and b in the figure have equal magnitude of 26 m and the angles are θ1=21° and θ2 = 97°. Find the x-component of their vector sum r.Find the y-component of their vector sum r.What is the magnitude of their vector sum r?Find the angle that their vector sum r makes with the positive direction of the x-axis.
At the instant of the figure, a 4.10 kg particle P has a position vector r of magnitude 9.10 m and angle θ1 = 44.0° and a velocity vector v of magnitude 4.60 m/s and angle θ2= 33.0°. Force F,of magnitude 5.30 N and angle θ3 = 33.0° acts on P. All three vectors lie in the xy plane. About the origin, what are the magnitude of (a) the angular momentum of the particle and (b) the torque acting on...
2. In the diagram, A has magnitude 12.0 and B has magnitude 8.00. What are the magnitude and direction of - A - 2.00B? y 60.0° A 45.0°
The diagram below shows a beam of light shining through three
linear polarizers in a row. The polarizing axis of each polarizer
is measured at an angle (ϴ1,ϴ2,ϴ3) from vertical.
Suppose that the original beam of light emanates from a
vertically polarized laser. The laser has a power output of 1 mW
and the beam has a diameter of 2 mm. What is the intensity of the
laser beam before it travels through any polarizers?
Calculate the final intensity of...
In the diagram, a has magnitude of 10m and b has magnitude 15m. Find the magnitude and direction of resultant vector, c, where a + b = c. 105° 30°