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A: Given:- Three vector a →=2.0 b→=1.0 R→=5.83θ=31° Find:- The third vector
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A: Given The x component of vector A is 3 units, and its y component is -4 units. The magnitude of A…
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A: Given data: M = 4.00 m, towards East N = 3.00 m, towards South Required: Resultant vector M+N
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Q: X x X X XX X x X X X X,X 40 cm
A: Given,mass of the wire, m = 50 g =50×10-3 kglength of the wire, L = 40 cm = 40×10-2 mcurrent, I…
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Q: Express the following sum with the correct number of significant figures: 1.80 mm + 171.5 cm +…
A: Here, the sum is
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Q: Compute the following numbers to three significant figures.a. 33.3 x 25.4 b. 33.3 -…
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Q: If a vector has a x-component = - 53.7 m and a y- component = -12.3 m, what is the direction of the…
A: The vector diagram for the provided vector is:
Q: QUESTION 7 *,=x,+v+ 2 x,= 66.6 m "f V= 5.09 m/s t= 9.02 s a = 1.13 m/s2 x,= ? in m Input answer…
A: Part (7): Given: The final position of the object is xf = 66.6 m. The initial velocity is vix = 5.09…
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A:
Q: A force F1 = 4.90 N North and a force F2 = 9.80 N Southwest are added. The resultant vector is…
A: F1 = 4.90 N due north F2 = 9.80 N due south west
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A: Write the sum of components in horizontal direction.…
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Q: Two vectors, A and B, have magnitudes of 4.70 units and 9.81 units, respectively. The angle between…
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Q: If the vector = 5 N and the angle with x-axis is ?= 36.80, then the rectangular form of the vector…
A: Given,Magnitude of the vector, R = 5 NAngle with the horizontal or with x - axis, θ = 36.80°
Q: Vector A→ has a magnitude of 16.0 units, vector B→ has a magnitude of 25.0 units, and A→⋅B→ has a…
A: Given data *Vector A has magnitude is A=16.0 units *Vector B has magnitude is B=25.0 units *The…
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A: Given: B→=Bx→+By→=-2.10 i^-1.70 j^ m
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Q: Perform the following operation leaving your answer with the correct number of significant figures:…
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Q: Convert the following to SI base units:a. 9.12 μs b. 3.42 kmc. 44 cm/ms d. 80…
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Q: 1. Drag 5 arrows, with random (desired) magnitude and direction, to the plane and find its resultant…
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Q: Convert the following to SI base units: a. 9.12 ms b. 3.42 km c. 44 cm/ms d. 80 km/h
A: a) To convert 9.12μs to s, 1μs=1×10-6sec9.12μs=xx=9.12μs1×10-6sec1μsx=9.12×10-6s
Q: The x and y coordinates of point P are (-8.50 m, -7.00 m). What is the magnitude of point P?
A: Solution:
Q: Consider a Vector A =2î – 2 + 6k and another vector B=13î + 73 – 4.5k. Both of them has unit of…
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Q: ector a is 15 units and vector b, which makes 90° with vector a is 20 units. Find the difference…
A: difference between a and b is same as the sum of a and -b the angle between a and -b is still 900 ,…
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Q: Vector A has a magnitude of 8 units and makes an angle of 45.0 degrees with the positive x-axis.…
A: For vector addition, we resolve each vector into horizontal and vertical components and then add…
Q: The x-component of vector R is R = -28.4 units and its y-component is R₁ = 23.6 units. What are its…
A: Given The x component of the vector R, Rx=-28.4 Units The Y component of the vector R, Ry=23.6 Units…
Q: 13. Using trigonometric functions, find the missing part (? or x) in the following figures. B 14 115…
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Q: If a vector 2i^+3j^−4k^ is perpendicular to the vector 3i^+j^+αk^, then the value of α is
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Q: (a) Ả = -2.00î + 6.00ĵ and B = 2.00î (b) Ã = 3.00î + 5.00ĵ and B = 10.00
A: Givena A→=-2 i^+6 j^ and B→=2 i^-3 j^b A→=3 i^+5 j^ and B→=10 i^+6 j^c A→=-4 i^+2 j^ and…
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A: The magnitude of the vector is define as the square root of the coefficient of the components…
Q: Vector A has x and y components of -9.00 cm and 18.0 cm, respectively; vector B has x and y…
A: Given data: The components of vector A and B Ax = -9.00 cm, Ay = 18.0 cm Bx = 12.8 cm, By =…
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A: The equation given is
Q: B = 4.0 units A=5.0 units 40° 70° 50° C =3.0 units Let resultant vector be R = À - B %3D The…
A: A→ = 5 × ( -cos(40o)i^ + sin(40o)j^)A→ = - 3.83i^ + 3.21j^ unitsB→ = 4 × (cos(70o)i^ + sin(70o)j^)B→…
Q: A vector has components Ax = −5.00 m and Ay = 9.00 m. Find (a) the magnitude and (b) the direction…
A: Ax = −5.00 m Ay = 9.00 m
Q: 6. State the number of significant digits in each of the following measurements A 0.00003m B 64 01…
A: In the given problem,
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- Question 1 6 p A spherical conductor has a radius of 8 mm and a charge of 20µC. Calculate the electric field at r = 6mm. O V/m 5 GV/m 2.815 GV/m 9 GV/mIn (Figure 1), take q1 = 62 µC, q2 = -32 µC, and g- 12 μC. Figure у (m) 2- O 43 10 92 x (m) 3 2 Find the components of the electric force on q3. Enter your answers in newtons to two significant figures separated by a comma. ΑΣφ ? F3z, F3y = NSuppose three charges: 91 = 4.00 nC, q2 = - 4.00 nC, q3 = 2.40 nC are enciosed by five surfaces as shown below. S Give the electric flux through each surface. Input all numerical volues in three significont figures. Do not forget to include the sign if the value is negative. S1:01= e N m?/c 52: Ф2* N-m?/C S3: 03 = 1 N-m?/c S4: 04= N-m2/c 5: 05 N m?/C
- 1 1 f. a = 68cm, b = 78cm, Q = = 15,00ne Now and Q a = 68 nC, what is the mo magnitude and direction of the electric field at pointp? a b b P a 9%The magnitude of electric field at point (A) at a distance r =3 m from the center of a charged conductor of radius R= 0.2 m is E=2000 N/C outwards. What is the net charge (in µC) on the conductor? r= 3m A R=0.2mqa Oq qc O qa Calculate the magnitude of the electric field at the location of charge q, given that the square is 5.00 cm on a side and q=2.00 μC, given that qa = qb= +0.68 μC and qe qd=-0.68 μC. 1.36e107 q N/C
- Find the electric field at P in the figure shown below. (Take r = 1.6 m and 0 = 44°. Measure the angle counterclockwise from the positive x-axis.) magnitude O direction P r 9= 10×10-⁹C+x 91 r2 92 P Find the net electric field in N/C at point P, where q1 = (-7.8480x10^0) nC, r1 = (3.6940x10^-1) metres, q2 = (4.25x10^0) nC and r2 = (5.491x10^-1) metres. You do not need to include a unit vector in your answer, but must include a minus sign if the field direction is in the negative x direction. %3DFind the x and y components 2.06 μC and 92 (Take 91 Point A Ex= Ey = Point B Ex= Ey = = y, m 3 2 1 91 XX XX 1 = of the electric field produced by 9₁ and 92 in the figure shown below at point A and point B. -1.03 μC.) 92 JA 2 L IB 3 4 درا -x, m
- An α - particle has mass of m = 6.64 x 10-27 kg and charge q = +2e (e = 1.60 x 10-19 C). Find the magnitude of the electric repulsion between two α - particle at 4.0 cm. Write your answer in decimal with 2 - significant figure. No unit required.X2. The magnitude of the electric field between the two circular parallel plates in figure below is E = (4.0x105) - (6.0x104 t), with E in volts per meter and t in seconds. At t = 0, E is upward. The plate area is 4.0x10-² m². For t≥ 0, what are the (a) magnitude and (b) direction (up or down) of the displacement current between the plates and (c) is the direction of the induced magnetic field clockwise or counter- clockwise in the figure?An electron initially at rest is released in a uniform electric field, the electron is accelerated horizontally to the right, traveling 4.77 m in the first 3.24x10-6s after being released, what is the magnitude of the electric field? electron q: 1.602x10-19 c m: 9.11x10-31 kg. Ans in N/C