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()Tj
/F3 1 Tf
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1.7076 0 TD
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(Female)Tj
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0 Tc
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0.5459 0 TD
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[(eacher)-54.4(. )]TJ
2.6087 -2 TD
0.1115 Tw
(A 50.-kilogram child running at 6.0 meters)Tj
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-0.0085 Tw
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0.025 Tw
(sled. . . . . . )Tj
0 -1.4783 TD
[(\(1\))-500.1(0)-0.1(.70 N)-6140.5(\()0.2(3\))-500.1(3.0 N)]TJ
0 -1.1304 TD
[(\(2\))-500.1(1)-0.1(.5 N)-6640.5(\()0.2(4\))-500.1(6.0 N)]TJ
22.4549 54.8696 TD
0.3481 Tw
[(14)-413.2(The diagram below represents the magnetic)]TJ
1.413 -1.1304 TD
0.025 Tw
(field near point )Tj
/F5 1 Tf
6.6543 0 TD
0 Tc
0 Tw
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/F3 1 Tf
0.5559 0 TD
(. What are the advantages and disadvantages of video capture hardware? A pulse traveled the length of a stretched spring. [)Tj
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0 Tw
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(])Tj
ET
1 g
318.46 595.268 245.703 -251.903 re
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0 0 0 1 K
0 J 0 j 1 w 4 M []0 d
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1 i
366.74 501.959 143.333 -144.667 re
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[4 4 ]0 d
474.74 429.792 m
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1.5 w 3.864 M []0 d
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[(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
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492.051 465.939 m
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q
-1 793 614 -794 re
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0 792.06 612 -792 re
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230.559 515.986 61.87 -17.015 re
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168.189 515.986 61.87 -17.015 re
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105.819 515.986 61.87 -17.015 re
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43.449 515.986 61.87 -17.015 re
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230.559 533.501 61.87 -17.015 re
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168.189 533.501 61.87 -17.015 re
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105.819 533.501 61.87 -17.015 re
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43.449 533.501 61.87 -17.015 re
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42.949 546.501 249.98 -100.573 re
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43.449 546.001 61.87 -47.03 re
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105.819 546.001 61.87 -47.03 re
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(\(A\))Tj
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1 g
168.189 546.001 61.87 -47.03 re
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/F2 1 Tf
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(otential)Tj
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[(Diff)9.7(erence)]TJ
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1 g
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(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
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1 g
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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
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0 g
-0.0001 Tc
0 Tw
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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
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BT
10 0 0 10 255.9348 487.4153 Tm
0 g
(89)Tj
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1 g
43.449 480.957 61.87 -17.015 re
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BT
10 0 0 10 59.244 469.9006 Tm
0 g
-0.0002 Tc
0.0278 Tw
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1 g
105.819 480.957 61.87 -17.015 re
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BT
10 0 0 10 127.3961 469.9006 Tm
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0 Tw
[(0.1)73.8(1)]TJ
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1 g
168.189 480.957 61.87 -17.015 re
f
BT
10 0 0 10 189.3962 469.9006 Tm
0 g
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ET
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
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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
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ET
1 g
168.189 463.442 61.87 -17.014 re
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10 0 0 10 189.3962 452.386 Tm
0 g
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ET
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230.559 463.442 61.87 -17.014 re
f
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
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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
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1 w
305.154 672.484 m
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125.63 122.086 m
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S
Q
Does the medium in which a wave travels move with, A. D: pitch, As a longitudinal wave moves through a medium, the particles of the medium (1 point) A. higher pitch and shorter wavelength B. higher pitch and longer wavelength C. lower pitch and shorter, 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 ( ). )]TJ
/F5 1 Tf
-14.1443 -2.1739 TD
-0.0002 Tc
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(Directions)Tj
/F3 1 Tf
4.5506 0 TD
-0.0001 Tc
0.025 Tw
(\(4863\): Record your answers in the spaces provided in your answer booklet. Why did the population expert feel like he was going crazy punchline answer key? . . . . B.) What, a. . . . . This guide lays out styles and policies Twin Cities Geek follows for punctuation, formatting, spelling, inclusive language, and more in our articles and other communications. . . c. frequency of the wave. A. an echo of sound in the canyon C: loudness D: speed. . )Tj
-15.0622 -7.6802 TD
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/F9 1 Tf
3.1905 0 TD
0 Tc
()Tj
/F3 1 Tf
7.4182 0 TD
-0.0001 Tc
[(\(4\))-500.1(160 )]TJ
/F9 1 Tf
3.4405 0 TD
0 Tc
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/F3 1 Tf
-15.4623 -2.8696 TD
-0.0001 Tc
0.3215 Tw
[(25)-413.2(A tuning fork oscillates with a frequency of )]TJ
1.413 -1.1304 TD
0.1413 Tw
(256 hertz after being struck by a rubber ham-)Tj
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0.2858 Tw
[(mer)73.9(. 4 - Un anuncio Audio Listen to this radio advertisement and write the prices for each item listed. For example, if a wave has a frequency of 120 Hz and a wavelength of 5m, it. You have the length. A. they can move through space B. they can shake structures C. they carry and transfer energy . Then fill in the heading of your answer booklet. [)]TJ
9 0 0 9 119.9826 330.7357 Tm
0 Tc
0 Tw
(1)Tj
11.5 0 0 11.5 124.4826 330.7357 Tm
(])Tj
-6.5862 -3.2174 TD
-0.0001 Tc
0.2055 Tw
[(66)-413.2(Calculate the equivalent resistance of the cir-)]TJ
1.413 -1.1304 TD
0.0237 Tw
(cuit. . The difference of seven and three times a number x. Use the information about four different waves to answer the question. . . . . A wave's wavelength is the separation between two adjacent waves' corresponding points. . . 2) The equation of a wave along the x-axis is given as: cm = 3.4 sin (1.13 x - 0.75 t) in which is the displacement. 1. )Tj
0 -16.6087 TD
-0.0001 Tc
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0 -1.4783 TD
-0.0002 Tc
0 Tw
[(\(1\))-500.2(j)0(oules)-6538.1(\(3\))-500.2(w)-0.1(atts)]TJ
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-0.0001 Tc
[(\(2\))-500.1(seconds)-5705(\(4\))-500.1(newtons)]TJ
22.4573 50.8696 TD
0.2442 Tw
[(41)-413.2(In the diagram below)73.8(, two positively charged)]TJ
1.413 -1.1304 TD
0 Tw
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/F5 1 Tf
3.8985 0 TD
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(A)Tj
/F3 1 Tf
1.1511 0 TD
-0.0001 Tc
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/F5 1 Tf
2.0208 0 TD
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/F3 1 Tf
0.648 0 TD
-0.0001 Tc
0.2532 Tw
(, of masses )Tj
/F5 1 Tf
5.4239 0 TD
0 Tc
0 Tw
(m)Tj
7.993 0 0 7.993 499.6905 716.6337 Tm
(A)Tj
/F3 1 Tf
11.5 0 0 11.5 510.6559 720.4286 Tm
-0.0001 Tc
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/F5 1 Tf
2.0208 0 TD
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(m)Tj
7.993 0 0 7.993 542.8397 716.6337 Tm
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/F3 1 Tf
11.5 0 0 11.5 553.8052 720.4286 Tm
-0.0002 Tc
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-18.5756 -1.1304 TD
-0.0001 Tc
0.025 Tw
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/F5 1 Tf
7.6341 0 TD
0 Tc
0 Tw
(d)Tj
/F3 1 Tf
0.8119 0 TD
-0.0001 Tc
(apart. Atomic radii decrease from left to right across a period and decrease from top to bottom in a group. One student moves the jump rope up and down, making a wave. If you increase the frequency of a periodic wave, the wave 1. is a longitudinal wave 2. possesses energy inversely proportional to its frequency 3. diffracts and accelerates in air4. (d) What is the speed of the wave? A: 0.5 s These waves are best classified as, Which form(s) of energy can be transmitted through a vacuum? . Wiki User. )78( )]TJ
1.328 0 TD
0 Tc
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1.328 0 TD
0 Tc
0 Tw
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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. What is the value for k, 1.) . )]TJ
ET
356.784 523.773 m
356.784 200.34 l
S
286.517 229.555 29 -29 re
447.009 323.937 m
S
BT
/F1 1 Tf
9 0 0 9 274.8092 236.4167 Tm
-0.0001 Tc
0.0278 Tw
(Part A Score)Tj
ET
487.525 390.915 29 -29 re
326.973 236.417 m
S
BT
9 0 0 9 470.3395 397.7762 Tm
(Part B1 Score)Tj
ET
Q
B. rock . . (4) Both types of waves transfer energy. . C. a rock making ripples in water B: amplitude C: move eastward, only D: Both are transverse waves, An earthquake wave is traveling from west to east through rock. . Could someone please help me with the science practice, 1. b )-1322(2)0(2)-200( . . )]TJ
31.5521 0 TD
(. . . . Are all waves periodic waves? (spJs bE`*A QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE QE Q@9 . . 1 g
/GS1 gs
12 782 m
12 782 l
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-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
([3])Tj
9 0 0 9 538.0142 53.5807 Tm
-0.0002 Tc
([OVER])Tj
ET
1 g
42.739 743.509 526.963 -646.559 re
f
BT
11.5 0 0 11.5 55.2388 733.9768 Tm
0 g
0.413 Tc
(8A)Tj
1.561 0 TD
( )Tj
0.4354 0 TD
-0.0001 Tc
0.1855 Tw
(60-kilogram skydiver is falling at a constant)Tj
-1.0833 -1.1304 TD
0.0144 Tw
(speed near the surface of Earth. B. . It requires a medium for its propagation. A series of pulses at regular intervals. . . )]TJ
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0 G
0 J 0 j 1 w 10 M []0 d
69.508 244.299 478.666 -69.111 re
516.676 145.839 m
S
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-1.328 -2.4 TD
0.078 Tc
-0.078 Tw
[(8 . B.) . )10( )10(. 7. which type of wave can only be transmitted through matter? a, b).What is the second longest wavelength? has a wave velocity that differs by a factor of two from what it would be for a traveling wave MCQ13 [3 points]: If you hold a 1.2-m aluminum rod in the center and hit . ( eiusmod tempor incididunt ut labore et dolore magna aliqua. Heat cycles through liquid magma currents in the mantle. . . )Tj
ET
0 G
1 w 10 M
127.621 304.667 m
486.667 304.667 l
S
1 g
41.916 286.252 527.429 -175.412 re
f
BT
11.5 0 0 11.5 48.5512 275.5269 Tm
0 g
-0.0101 Tc
0.3542 Tw
[(37)-443.2(An object with a net charge of 4.80 )]TJ
/F9 1 Tf
18.5101 0 TD
0 Tc
0 Tw
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/F3 1 Tf
1.133 0 TD
-0.01 Tc
(10)Tj
7.993 0 0 7.993 285.7175 279.3219 Tm
(6)Tj
11.5 0 0 11.5 64.9161 262.5269 Tm
-0.0215 Tw
(coulomb experiences an electrostatic force having)Tj
0 -1.1304 TD
0.0836 Tw
[(a magnitude of 6.00 )]TJ
/F9 1 Tf
8.5485 0 TD
0 Tc
0 Tw
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/F3 1 Tf
0.8625 0 TD
-0.01 Tc
(10)Tj
7.993 0 0 7.993 184.4122 253.3219 Tm
(2)Tj
11.5 0 0 11.5 195.967 249.527 Tm
0.0836 Tw
(newton when placed)Tj
-11.3957 -1.1304 TD
0.0969 Tw
(near a negatively charged metal sphere. . A. a transverse wave B. a longitudinal wave C. a, What are the three lowest notes that this string can play (keeping the string at its full length)? . If the particles of the rock are vibrating in a north-south direction, the wave must be . . Dramatic structure (also known as dramaturgical structure) is the structure of a dramatic work such as a book, play, or film. . . C: s/Hz % . . help, When youre finished, please lock the door. Which phrase best describes the sound waves produced by this oscillating tuning fork? . )]TJ
1.0748 0 TD
0.025 Tc
0 Tw
( [)Tj
9 0 0 9 251.3404 501.1809 Tm
0 Tc
(1)Tj
11.5 0 0 11.5 255.8404 501.1809 Tm
(])Tj
-17.949 -3.2174 TD
-0.0001 Tc
0.0198 Tw
[(49)-413.2(Rubbing a moistened finger around the rim of a)]TJ
1.413 -1.1304 TD
0.1407 Tw
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0.3709 Tw
(natural frequency of the glass. . )Tj
-1.413 -10.6087 TD
[(15)-413.2(Which person has the greatest inertia? Wu"FNZPH8{?Cd{H>/{|N94# t?xTaMG{\z42)-rM=?qL-6&Br)j0h*g8.gO_AHH8D]{|SU-. 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? Which measure does not change when a wave moves from one medium to another? In essence, they are electrical and. . endobj
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2.1818 -2.2727 TD
0 Tc
0 Tw
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0.5188 0 TD
-0.0002 Tc
0.0598 Tw
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/F4 1 Tf
8.1466 0 TD
-0.0001 Tc
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/F1 1 Tf
1.5044 0 TD
-0.0002 Tc
0.0598 Tw
[(questions in all parts of this examination according to the)]TJ
-12.3516 -1.1818 TD
-0.0001 Tc
0.1112 Tw
[(directions provided in the examination booklet. . . . What's the amplitude of the right moving wave and left moving wave? A: decrease Which circuit uses the greatest power? . Which phrase best describes wavelength? The time it takes for a wave to repeat C. The distance between, a. one-ninth b. one-third c. the same as d. three times, 1. endobj . The magnitude)Tj
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0.0268 Tw
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0 -1.4783 TD
-0.0002 Tc
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0 -1.1304 TD
[(\(2\))-500.2(6)-0.1( N)-7390.6(\()0.1(4\))-500.2(600 N)]TJ
-0.913 -2.8696 TD
0 Tc
0 Tw
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0.913 0 TD
-0.0001 Tc
0.0687 Tw
(An astronaut weighs 8.00 )Tj
/F9 1 Tf
10.8529 0 TD
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0 Tw
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/F3 1 Tf
0.8675 0 TD
(10)Tj
7.993 0 0 7.993 212.5987 635.7719 Tm
(2)Tj
11.5 0 0 11.5 220.26 631.9768 Tm
-0.0001 Tc
0.0687 Tw
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-13.4366 -1.1304 TD
0.2959 Tw
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39.5302 -4 TD
-0.0002 Tc
0 Tw
(Signature)Tj
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1 w
280.82 629.894 m
339.82 629.894 l
S
[3.004 2.003 ]3.004 d
29.82 795.965 m
29.82 -7.177 l
S
[]0 d
29.82 798.894 m
29.82 795.965 l
S
BT
0 8 -8 0 25.7561 84.9 Tm
0 Tc
(T)Tj
0.593 0 TD
-0.0002 Tc
0.0278 Tw
(ear Here)Tj
68.407 0.125 TD
0 Tc
0 Tw
(T)Tj
0.593 0 TD
-0.0002 Tc
0.0278 Tw
(ear Here)Tj
ET
265.154 67.061 m
571.154 67.061 l
S
1 g
86.169 525.094 262.516 -306 re
f
BT
11 0 0 11 201.3838 515.9328 Tm
0 g
[(Part A)]TJ
/F3 1 Tf
10 0 0 10 92.1693 491.9328 Tm
0.078 Tc
-0.078 Tw
[(1 . . C. evaporation ( . C: 2.5 s B. a solid. . 1.Shiny glass bowls and goblets drew the gaze of people PASSING THE WINDOW. . If the distance)Tj
-13.1888 -1.1304 TD
0.0805 Tw
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0.025 Tw
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0 -1.7391 TD
-0.0002 Tc
0 Tw
[(\(1\))-9443.4(\()0.1(3\))]TJ
0 -1.913 TD
-0.0003 Tc
[(\(2\))-500.3(2)]TJ
/F5 1 Tf
2.1655 0 TD
0 Tc
(F)Tj
/F3 1 Tf
8.4432 0 TD
-0.0003 Tc
[(\(4\))-500.3(4)]TJ
/F5 1 Tf
2.1655 0 TD
0 Tc
(F)Tj
ET
1 g
482.374 207.679 9 -21.702 re
f
Q
q
1 i
482.374 207.679 9 -21.702 re
W* n
0 G
0 J 0 j 0.5 w 10 M []0 d
483.374 195.523 m
491.624 195.523 l
S
Q
BT
/F5 1 Tf
11 0 0 11 484.124 197.3665 Tm
0 g
0 Tc
0 Tw
(F)Tj
/F3 1 Tf
0.0682 -1.0085 TD
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. )-1322(4)0(5)-200( . . . A periodic wave is a periodic disturbance that moves through a medium. . . (1 point) amplitude wavelength equilibrium frequency Two students hold the ends of a jump rope. . There are three general types of mechanical waves: . . b) What is the wavelength of the wave? Wave speed is the distance a wave travels in a given amount of time, such as the number of meters it travels per second. [)]TJ
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