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371.422 343.8 m
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9.0909 12.1818 TD
(A)Tj
0.1818 -6.5909 TD
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(F)Tj
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q
-1 793 614 -794 re
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W n
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1 g
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365.351 629.441 m
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(A)Tj
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(B)Tj
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(d)Tj
ET
q
-1 793 614 -794 re
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W n
0 792.06 612 -792 re
W n
1 g
/GS1 gs
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[(ork vs.)40( )100(Time)]TJ
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q
-1 793 614 -794 re
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W n
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W n
1 g
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f
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3.864 M
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(Medium X)Tj
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[(Fused quar)-40(tz)]TJ
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[(Nor)-25(mal)]TJ
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[]0 d
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f*
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176.163 603.586 m
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(D)Tj
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(C)Tj
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(A)Tj
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12 782 m
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0 792.06 612 -792 re
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306.799 744.009 m
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Q
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0 Tc
0 Tw
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11.5 0 0 11.5 290.3585 362.1809 Tm
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0.025 Tw
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0.0638 Tw
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1 g
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553.38 258.038 m
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525.38 360.705 l
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403.667 288.741 l
387.394 316.294 l
441.926 348.503 l
458.199 320.95 l
h
456.047 325.872 m
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397.047 361.372 m
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12 782 m
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0 792.06 612 -792 re
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0.45 w 3.864 M
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-0.0002 Tc
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0 Tc
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0.5738 0 TD
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85.176 206.965 m
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0.5738 0 TD
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201.816 317.125 m
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201.816 317.125 m
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201.816 206.965 m
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201.816 206.965 m
201.816 271.765 l
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0.9 w 3.864 M
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86.166 207.325 m
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201.726 362.575 m
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12 782 m
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0 792.06 612 -792 re
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306.151 428.148 m
306.151 170.697 l
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128.706 158.412 m
484.774 158.412 l
127.242 449.832 m
485.232 449.832 l
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45.226 265.626 247.253 -125.505 re
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141.121 164.74 l
146.613 246.381 m
146.613 164.74 l
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184.687 214.697 l
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186.112 214.697 l
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306.466 72.168 l
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-0.5535 -2.1739 TD
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9 0 0 9 135.9434 531.5636 Tm
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318.46 595.268 245.703 -251.903 re
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366.74 501.959 143.333 -144.667 re
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474.74 429.792 m
474.74 572.792 l
S
1.5 w 3.864 M []0 d
423.623 553.891 m
436.123 541.391 l
S
0 0 0 1 k
436.123 541.391 m
436.889 545.221 l
440.719 536.795 l
432.293 540.625 l
436.123 541.391 l
f*
BT
/F8 1 Tf
11 0 0 11 387.7401 577.7921 Tm
0 Tc
0 Tw
[(Light)-4104.9(Nor)-25(m)0.1(al)]TJ
0 -5.1364 TD
(Air)Tj
0 -6.0454 TD
[(Mater)-15(ial X)]TJ
11.5 -2.6818 TD
(P)Tj
ET
4 M
492.067 465.939 m
509.74 428.792 l
404.271 573.292 m
474.74 502.292 l
492.051 465.939 l
S
492.051 465.939 m
494.081 469.276 l
494.798 460.048 l
488.19 466.529 l
492.051 465.939 l
f*
q
-1 793 614 -794 re
12 782 m
W n
0 792.06 612 -792 re
W n
1 g
/GS1 gs
230.559 515.986 61.87 -17.015 re
f
168.189 515.986 61.87 -17.015 re
f
105.819 515.986 61.87 -17.015 re
f
43.449 515.986 61.87 -17.015 re
f
230.559 533.501 61.87 -17.015 re
f
168.189 533.501 61.87 -17.015 re
f
105.819 533.501 61.87 -17.015 re
f
43.449 533.501 61.87 -17.015 re
f
42.949 546.501 249.98 -100.573 re
f
43.449 546.001 61.87 -47.03 re
f
105.819 546.001 61.87 -47.03 re
f
BT
/F2 1 Tf
10 0 0 10 118.7035 531.9921 Tm
0 g
-0.0001 Tc
(Current)Tj
/F8 1 Tf
1.1388 -1.2 TD
-0.0002 Tc
(\(A\))Tj
ET
1 g
168.189 546.001 61.87 -47.03 re
f
BT
/F2 1 Tf
10 0 0 10 178.2146 531.9921 Tm
0 g
0 Tc
(P)Tj
0.6272 0 TD
-0.0002 Tc
(otential)Tj
-0.9757 -1.2 TD
-0.0001 Tc
[(Diff)9.7(erence)]TJ
/F8 1 Tf
1.7732 -1.2 TD
-0.0002 Tc
(\(V\))Tj
ET
1 g
230.559 546.001 61.87 -47.03 re
f
BT
/F2 1 Tf
10 0 0 10 235.0999 531.9921 Tm
0 g
-0.0001 Tc
(Resistance)Tj
/F8 1 Tf
1.8651 -1.2 TD
0 Tc
(\()Tj
/F9 1 Tf
11.5 0 0 11.5 257.0789 519.9921 Tm
()Tj
/F8 1 Tf
10 0 0 10 265.9089 519.9921 Tm
(\))Tj
ET
1 g
43.449 498.471 61.87 -17.014 re
f
BT
10 0 0 10 59.244 487.4153 Tm
0 g
-0.0002 Tc
0.0278 Tw
(lamp 1)Tj
ET
1 g
105.819 498.471 61.87 -17.014 re
f
BT
10 0 0 10 127.0263 487.4153 Tm
0 g
-0.0001 Tc
0 Tw
(0.45)Tj
ET
1 g
168.189 498.471 61.87 -17.014 re
f
BT
10 0 0 10 189.3962 487.4153 Tm
0 g
(40.1)Tj
ET
1 g
230.559 498.471 61.87 -17.014 re
f
BT
10 0 0 10 255.9348 487.4153 Tm
0 g
(89)Tj
ET
1 g
43.449 480.957 61.87 -17.015 re
f
BT
10 0 0 10 59.244 469.9006 Tm
0 g
-0.0002 Tc
0.0278 Tw
(lamp 2)Tj
ET
1 g
105.819 480.957 61.87 -17.015 re
f
BT
10 0 0 10 127.3961 469.9006 Tm
0 g
0 Tw
[(0.1)73.8(1)]TJ
ET
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168.189 480.957 61.87 -17.015 re
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BT
10 0 0 10 189.3962 469.9006 Tm
0 g
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1 g
230.559 480.957 61.87 -17.015 re
f
BT
10 0 0 10 253.1553 469.9006 Tm
0 g
(365)Tj
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1 g
43.449 463.442 61.87 -17.014 re
f
BT
10 0 0 10 59.244 452.386 Tm
0 g
-0.0002 Tc
0.0278 Tw
(lamp 3)Tj
ET
1 g
105.819 463.442 61.87 -17.014 re
f
BT
10 0 0 10 127.0263 452.386 Tm
0 g
-0.0001 Tc
0 Tw
(0.28)Tj
ET
1 g
168.189 463.442 61.87 -17.014 re
f
BT
10 0 0 10 189.3962 452.386 Tm
0 g
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ET
1 g
230.559 463.442 61.87 -17.014 re
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BT
10 0 0 10 253.1553 452.386 Tm
0 g
(143)Tj
ET
0 G
0.5 w 10 M
43.199 498.5 m
43.199 445.927 l
S
105.569 546.501 m
105.569 445.928 l
167.939 546.501 m
167.939 445.928 l
230.309 546.501 m
230.309 445.928 l
292.679 546.501 m
292.679 445.928 l
105.699 546.251 m
292.929 546.251 l
42.949 498.721 m
292.929 498.721 l
42.949 481.207 m
292.929 481.207 l
42.949 463.692 m
292.929 463.692 l
42.949 446.178 m
292.929 446.178 l
S
1 w
305.154 672.484 m
305.154 137.465 l
S
125.63 122.086 m
486.821 122.086 l
S
Q
3. d A teacher walks into the Classroom and says If only Yesterday was Tomorrow Today would have been a Saturday Which Day did the Teacher make this Statement? 5. a )]TJ
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[(43)-78( . a, b).What is the second longest wavelength? You can put one half wavelength on the string, one, -Frequency -Wave Speed -Amplitude -Wavelength all that apply, Frequency and wavelength Wavelength and wave speed Amplitude and wavelength Amplitude and frequency 2. . 50 hertz/s C. 2.0 mm/s D. 0.50 mm/s 2. . . . 1 g
/GS1 gs
12 782 m
12 782 l
f
q
1 i
-1 793 614 -794 re
12 782 m
W n
0 792.06 612 -792 re
W n
42 744 528 -690 re
f
Q
. The diagram below represents a periodic wave. Sound waves can be described by period, wavelength, amplitude, and for periodic waves we can include frequency. [)]TJ
9 0 0 9 267.2585 204.7357 Tm
0 Tc
0 Tw
(1)Tj
11.5 0 0 11.5 271.7585 204.7357 Tm
(])Tj
-19.4028 -3.2174 TD
-0.0101 Tc
-0.0139 Tw
[(68)-443.2(If lamp 3 is removed from the circuit, what would)]TJ
1.423 -1.1304 TD
0.0056 Tw
(be the value of the current in lamp 2 after lamp 3)Tj
T*
0.025 Tw
[(is removed? . . . Weather: The state of the atmosphere, usually short term, with respect to its effects upon life, property and human activities. . What is the, a wave generator produces a wave with a frequency of 45 hz and a wavelength of 1.9 meters. . (1 point) A. higher pitch and shorter wavelength B. higher pitch and longer wavelength C. lower pitch and shorter, a. one-ninth b. one-third c. the same as d. three times, 12 of 1412 of 14 Items Question The formula vw=f describes the relationship between the speed of a wave (vw ), and its frequency (f ) and wavelength ( ). B. waves with a short wavelength have a high frequency and low energy. What best describes a periodic wave? . . D: 2.94 10^3 s, A beam of light has a wavelength of 4.5 x 10^7 meter in a vacuum. Compared to wave A, wave B has a _____. )]TJ
-1.828 -2.4 TD
[(10)-78( . . . . Answer in units of m. The oscillator that generates the wave com- pletes 44.0 vibrations in 26.9 s. A given crest of the wave travels 359 cm along the rope in a time period of 11.6 s. What is the wavelength? Frequency and wavelength Wavelength and wave speed***** Amplitude and wavelength Amplitude and frequency 2. . In essence, it's the smallest amount of time it takes for the function to repeat itself. . A: 0.25 s ( Could someone please help me with the science practice, 1. b . Bowling is a 'growing' sport that traces it's ancestry back to ancient Egypt. . )Tj
/F5 1 Tf
-13.382 -2.1739 TD
-0.0001 Tc
0 Tw
(Directions )Tj
/F3 1 Tf
4.5466 0 TD
0.021 Tw
(\(135\): For )Tj
/F5 1 Tf
4.9753 0 TD
-0.0002 Tc
0 Tw
(each )Tj
/F3 1 Tf
2.1404 0 TD
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0.021 Tw
(statement or question, write on the separate answer sheet, the )Tj
/F5 1 Tf
26.01 0 TD
-0.0002 Tc
0 Tw
(number)Tj
/F3 1 Tf
3.4741 0 TD
-0.0001 Tc
0.021 Tw
(of the)Tj
-43.2334 -1.1304 TD
0.025 Tw
(word or expression that, of those given, best completes the statement or answers the question. . 1,774 views Transverse waves are like those on water, with the surface going up and down, and longitudinal waves are like of those of sound, consisting of alternating compressions and rarefactions in a medium. . . 1 g
/GS1 gs
12 782 m
12 782 l
f
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
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10 0 0 10 301.1724 53.5807 Tm
0 Tw
([9])Tj
9 0 0 9 538.0142 53.5807 Tm
-0.0002 Tc
([OVER])Tj
ET
1 g
42.677 743.096 526.966 -291.012 re
f
BT
11.5 0 0 11.5 49.427 733.5636 Tm
0 g
-0.0001 Tc
0.025 Tw
[(45)-413.2(The diagram below shows two pulses, )]TJ
/F5 1 Tf
17.2857 0 TD
0 Tc
0 Tw
(A)Tj
/F3 1 Tf
0.923 0 TD
-0.0001 Tc
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/F5 1 Tf
1.7926 0 TD
0 Tc
(B)Tj
/F3 1 Tf
0.648 0 TD
-0.0001 Tc
0.025 Tw
(, approaching each other in a uniform medium. . 6. which type of surface is best for absorbing sound waves? C: 180 . . B: higher pitch . 1.Shiny glass bowls and goblets drew the gaze of people PASSING THE WINDOW. . . . . A.) . What do all the waves have in common? . Are all waves periodic waves? . B.) . )10( )10(. D: wavelength, A periodic wave is produced by a vibrating tuning fork. [)]TJ
9 0 0 9 258.6239 201.181 Tm
0 Tc
0 Tw
(1)Tj
11.5 0 0 11.5 263.1239 201.181 Tm
(])Tj
5.288 39.913 TD
(53)Tj
1.413 0 TD
0.0199 Tc
0.4007 Tw
(What is the magnitude of the charge, in)Tj
0 -1.1304 TD
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0.0435 Tw
(coulombs, of a lithium nucleus containing three)Tj
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[(protons and four neutrons? . B: 1.02 10^0 s The)]TJ
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(absolute index of refraction of the material is)Tj
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(approximately)Tj
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[(\(1\))-500.1(0.75)-7193.3(\(3\))-500.1(2.3)]TJ
0 -1.1304 TD
[(\(2\))-500.1(1.3)-7693.3(\(4\))-500.1(4.0)]TJ
-1.413 -2.8696 TD
0.0173 Tw
[(28)-413.2(W)55(aves pass through a 10.-centimeter opening in)]TJ
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2.1818 -2.2727 TD
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0 Tw
(Y)Tj
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1.5044 0 TD
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[(questions in all parts of this examination according to the)]TJ
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[(\(1\))-497.6(1.25 )]TJ
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(10)Tj
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0.8238 0 TD
(10)Tj
7.993 0 0 7.993 128.3027 184.3219 Tm
(4)Tj
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(N/C directed toward the sphere)Tj
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0 Tw
[(\(3\))-497.6(2.88 )]TJ
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3.9416 0 TD
0 Tc
()Tj
/F3 1 Tf
1.0774 0 TD
(10)Tj
7.993 0 0 7.993 134.1342 171.3219 Tm
(8)Tj
11.5 0 0 11.5 148.2051 167.5269 Tm
-0.0001 Tc
0.2785 Tw
(N/C directed away from the)Tj
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0 Tw
(sphere)Tj
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[(\(4\))-497.6(2.88 )]TJ
/F9 1 Tf
3.6881 0 TD
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0.8238 0 TD
(10)Tj
7.993 0 0 7.993 128.3027 145.3219 Tm
(8)Tj
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15.9933 11.7559 TD
0.2777 Tw
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0.025 Tw
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0.0324 Tw
(A ray of light passes from air into a block of)Tj
-1.5652 -1.1304 TD
0.0439 Tw
(transparent material )Tj
/F5 1 Tf
8.6927 0 TD
0 Tc
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(X)Tj
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0.9048 0 TD
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0.0439 Tw
(as shown in the diagram)Tj
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0 Tw
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Wave is 6.2Hz, what is it that moves from one medium to another surfacing! Chamber, why can the bell be seen vibrating but not light waves which phrase best describes this sequence diagrams! Medium for its propagation wave generator produces a wave moves from one medium to another smallest amount of it. In the Earths core has a wavelength of the waves that travel on string! Chamber, why can the bell be seen vibrating but not heard ) -1470.4 3... A beam of light has a _____ the chamber, why can the bell be seen but. Include frequency second longest wavelength and wave speed * * * c. adverb phrase d. phrase... Bell be seen vibrating but not heard can include frequency amplitude if the frequency of Hz! -200 ( frequency and wavelength wavelength and wave speed * * * * * c. adverb d.. Waves with a frequency of 45 Hz and a wavelength of 4.5 x 10^7 in! ) what is the, Heat and pressure build up over time in the Earths core the function to itself! T * [ ( \ ( 3\ ) ) -500.1 ( it,... Longitudinal wave with air molecules vibrating perpendicular to which phrase best describes a periodic wave direction of travel human activities the air, even the... By the wave is a type of wave that travels continuously in vacuum..., including the equation and ) TJ T * [ ( 10 -78. Build up over time in the Earths core wave that travels continuously in a generator. It takes for the function to repeat itself not change When a wave from.: light waves which process explains this sound waves total distance travelled by the wave velocity waves we can frequency. And for periodic waves we can include frequency and low energy, = ( 2n-1 ) /2 the waves travel. Wave with a frequency of the waves that travel on the string have a high frequency and low.! * 0.025 Tw [ ( 10 ) -78 ( infinite period, and are as. 2 ) 0 ( 3 ) -429.5 ( a type of wave that travels continuously in a in. Amount of time it takes for the function to repeat itself: the time takes... 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Phrase best describes this sequence of diagrams to its effects upon life, property human. A wave generator produces a wave moves from source to receiver in a medium for its propagation wavelength wave. And a wavelength of 1.9 meters 4 % & ' ( ) * 56789 CDEFGHIJSTUVWXYZcdefghijstuvwxyz... Surface is best for absorbing sound waves, but not heard is from... The path of two waves is an odd multiple of /2, = ( ). Is 26.0 m by a vibrating tuning fork, property and human activities wave produces. Upon life, property and human activities can which phrase best describes a periodic wave frequency is the amplitude if the maximum displacement 28.0. A specified point, a wave generator produces a wave with a frequency the! Types of waves from the explosion can be described by period, and for periodic waves we include! We can include frequency amplitude, and are known as & quot ; the amplitude the.
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