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/F3 1 Tf
0.5559 0 TD
-0.0001 Tc
0.2973 Tw
(. . . along positive x-axis in air. )Tj
-8.446 -11.5652 TD
0.0115 Tw
(Which diagram best represents the directions of)Tj
0 -1.1304 TD
0.1309 Tw
(the gravitational force, )Tj
/F5 1 Tf
9.9045 0 TD
0 Tc
0 Tw
(F)Tj
7.993 0 0 7.993 458.6044 557.6337 Tm
(g)Tj
/F3 1 Tf
11.5 0 0 11.5 462.4485 561.4286 Tm
-0.0001 Tc
0.1309 Tw
(, and the electrostatic)Tj
-10.6316 -1.1304 TD
0 Tw
(force, )Tj
/F5 1 Tf
2.596 0 TD
0 Tc
(F)Tj
7.993 0 0 7.993 375.1318 544.6336 Tm
(e)Tj
/F3 1 Tf
11.5 0 0 11.5 378.5349 548.4286 Tm
-0.0001 Tc
-0.0136 Tw
(, acting on sphere )Tj
/F5 1 Tf
7.4871 0 TD
0 Tc
0 Tw
(A)Tj
/F3 1 Tf
0.8844 0 TD
-0.0001 Tc
-0.0136 Tw
(due to the mass and)Tj
-11.7062 -1.1304 TD
0.1264 Tw
(charge of sphere )Tj
/F5 1 Tf
7.4758 0 TD
0 Tc
0 Tw
(B)Tj
/F3 1 Tf
0.6479 0 TD
-0.0001 Tc
0.1264 Tw
[(? Which phrase best describes wavelength? 1 g
/GS1 gs
12 782 m
12 782 l
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q
1 i
-1 793 614 -794 re
12 782 m
W n
0 792.06 612 -792 re
W n
42 62 528 -21 re
f
BT
/F1 1 Tf
7 0 0 7 43 53.5807 Tm
0 g
-0.0001 Tc
0.0278 Tw
(PhysicsJune 03)Tj
/F3 1 Tf
10 0 0 10 301.1724 53.5807 Tm
0 Tw
([4])Tj
ET
1 g
43.226 743.626 527.212 -675.085 re
f
BT
/F1 1 Tf
11.5 0 0 11.5 66.2259 734.0934 Tm
0 g
-0.0224 Tc
0.0278 Tw
(Note that question 18 has only three choices. B: amplitude . The time interval among the two waves is an odd multiple of T/2, = (2n-1) T/2. D: Planck's constant, A tuning fork vibrates at a frequency of 512 hertz when struck with a rubber hammer. . . What is the compass direction of the force)Tj
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0 -1.4783 TD
0.025 Tw
[(\(1\))-500.1(0.11 m/s)]TJ
7.993 0 0 7.993 125.4671 169.2724 Tm
0 Tc
0 Tw
(2)Tj
11.5 0 0 11.5 188.2056 165.4774 Tm
-0.0001 Tc
0.025 Tw
[(\(3\))-500.1(0.22 m/s)]TJ
7.993 0 0 7.993 247.4671 169.2724 Tm
0 Tc
0 Tw
(2)Tj
11.5 0 0 11.5 66.2056 152.4774 Tm
-0.0001 Tc
0.025 Tw
[(\(2\))-500.1(2.0 m/s)]TJ
7.993 0 0 7.993 119.7171 156.2724 Tm
0 Tc
0 Tw
(2)Tj
11.5 0 0 11.5 188.2056 152.4774 Tm
-0.0001 Tc
0.025 Tw
[(\(4\))-500.1(9.0 m/s)]TJ
7.993 0 0 7.993 241.7171 156.2724 Tm
0 Tc
0 Tw
(2)Tj
11.5 0 0 11.5 327.5153 650.4774 Tm
0.638 Tc
(4A)Tj
1.786 0 TD
( )Tj
0.349 0 TD
-0.0001 Tc
0.0991 Tw
[(ball is thrown at an angle of 38)-349.1(to the hori-)]TJ
-0.997 -1.1304 TD
0.1426 Tw
(zontal. . . It is intended for internal use by our contributors and editors, but we are making it publicly available for transparency and reference purposes.Note that this information isn't meant to dictate what's universally right . A periodic wave transfers 1 energy, only 2 mass, only 3 both energy and mass 4 neither energy nor mass 1 energy, only which type of wave requires a medium through which to travel 1 radio wave 2 microwave 3 light wave 4 mechanical wave 4 mechanical wave A ringing bell is located in a chamber. . . B. waves with a short wavelength have a high frequency and low energy. endstream
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A: frequency . )]TJ
2.1818 -2.2727 TD
-0.0057 Tc
0.0064 Tw
(The answer booklet for Part B2 and Part C is stapled in the center of this exami-)Tj
-2.1818 -1.1818 TD
-0.0002 Tc
0.0463 Tw
[(nation booklet. )]TJ
ET
1 g
375.229 525.098 177.177 -205.367 re
f
BT
/F1 1 Tf
11 0 0 11 441.7639 515.937 Tm
0 g
-0.0001 Tc
0.0278 Tw
(Part B1)Tj
/F3 1 Tf
10 0 0 10 376.2286 491.9369 Tm
0 Tc
0 Tw
[(36)-78( . . 3) a transverse wave, where particles move perpendicular to the wave . Exposure to visible light does not damage)Tj
T*
0.2001 Tw
(skin. The frequency is. . )-1322(1)0(5)-200( . 5. a . . D. sound )]TJ
T*
[(37)-78( . )]TJ
/F9 1 Tf
3.1905 0 TD
0 Tc
()Tj
/F3 1 Tf
7.4182 0 TD
-0.0001 Tc
[(\(3\))-500.1(80. B: 2.0 m Find: The frequency of the wave The wavelength of the wave The, Meteors, often called shooting stars, can be seen on almost any cloudless night. )Tj
-11.2007 -1.1304 TD
0.142 Tw
(The horizontal and vertical components of the)Tj
T*
0.025 Tw
(vector will be equal in magnitude if angle )Tj
/F6 1 Tf
17.4656 0 TD
0 Tc
0 Tw
()Tj
/F3 1 Tf
0.775 0 TD
-0.0004 Tc
(is)Tj
-18.2406 -1.4783 TD
-0.0001 Tc
[(\(1\))-500.1(30)-7543.3(\(3\))-500.1(60)]TJ
0 -1.1304 TD
[(\(2\))-500.1(45)-7543.3(\(4\))-500.1(90)]TJ
-0.913 -2.8696 TD
0.413 Tc
(3A)Tj
1.561 0 TD
( )Tj
0.3419 0 TD
-0.0001 Tc
0.092 Tw
(car initially traveling at a speed of 16 meters)Tj
-0.9898 -1.1304 TD
0.1155 Tw
(per second accelerates uniformly to a speed of)Tj
T*
0.0199 Tc
0.3648 Tw
(20. meters per second over a distance of )Tj
T*
-0.0001 Tc
0.1585 Tw
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