A proton ( q = 1.60 × 10 −19 C, m = 1.67 × 10 −27 kg) moves in a uniform magnetic field B → = (0.500 T)i. At t = 0 the proton has velocity components ʋ x = 1.50 × 10 5 m/s, ʋ y = 0, and ʋ z = 2.00 × 10 5 m/s (see Example 27.4). (a) What are the magnitude and direction of the magnetic force acting on the proton? In addition to the magnetic field there is a uniform electric field in the + x -direction, E → = (+2.00 × 10 4 V/m) i ^ . (b) Will the proton have a component of acceleration in the direction of the electric field? (c) Describe the path of the proton. Does the electric field affect the radius of the helix? Explain, (d) At t = T /2, where T is the period of the circular motion of the proton, what is the x -component of the displacement of the proton from its position at t = 0?
A proton ( q = 1.60 × 10 −19 C, m = 1.67 × 10 −27 kg) moves in a uniform magnetic field B → = (0.500 T)i. At t = 0 the proton has velocity components ʋ x = 1.50 × 10 5 m/s, ʋ y = 0, and ʋ z = 2.00 × 10 5 m/s (see Example 27.4). (a) What are the magnitude and direction of the magnetic force acting on the proton? In addition to the magnetic field there is a uniform electric field in the + x -direction, E → = (+2.00 × 10 4 V/m) i ^ . (b) Will the proton have a component of acceleration in the direction of the electric field? (c) Describe the path of the proton. Does the electric field affect the radius of the helix? Explain, (d) At t = T /2, where T is the period of the circular motion of the proton, what is the x -component of the displacement of the proton from its position at t = 0?
A proton (q = 1.60 × 10−19 C, m = 1.67 × 10−27 kg) moves in a uniform magnetic field
B
→
= (0.500 T)i. At t = 0 the proton has velocity components ʋx = 1.50 × 105 m/s, ʋy = 0, and ʋz = 2.00 × 105 m/s (see Example 27.4). (a) What are the magnitude and direction of the magnetic force acting on the proton? In addition to the magnetic field there is a uniform electric field in the +x-direction,
E
→
= (+2.00 × 104 V/m)
i
^
. (b) Will the proton have a component of acceleration in the direction of the electric field? (c) Describe the path of the proton. Does the electric field affect the radius of the helix? Explain, (d) At t = T/2, where T is the period of the circular motion of the proton, what is the x-component of the displacement of the proton from its position at t = 0?
In the Super Smash Bros. games the character Yoshi’s has a “ground pound” down special move where he launches himself downward to attack an enemy beneath him. A) If Yoshi flings himself downwards at 9.76 miles per hour to hit an enemy 10.5 m below him, how fast is Yoshi traveling when he hits the enemy? 1 mile = 1609 m B) How much time does it take Yoshi to hit the enemy beneath him?
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