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A given crest of the wave travels 359 cm along the rope in a time period of 11.6 s. What is the wavelength? . C. they carry and transfer energy . Address )-1090.6(School)-639.5( . a) What is the amplitude if the maximum displacement is 28.0 cm and the total distance travelled by the wave is 26.0 m? . What is the period of the wave? . )Tj 0 -1.4783 TD [(\(1\))-500.1(It decreases, then increases. . . . This communication from the remote control to the television illustrates that electromagnetic radiation. . . What term best describes. 5 0 obj . . . . } !1AQa"q2#BR$3br . c. 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How does the sound wave change when it transfers from the air to the persons eardrum? 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What are the answers to studies weekly week 26 social studies? )]TJ ET 1 g 41.991 672.268 526.938 -543.952 re f BT 11.5 0 0 11.5 54.9908 662.7357 Tm 0 g 0.0794 Tw (Base your answers to questions 64 through 68 on)Tj -1.0435 -1.1304 TD 0.025 Tw [(the information and data table below)73.8(. %PDF-1.3 Exposure to visible light does not damage)Tj T* 0.2001 Tw (skin. . D. The quotient, In a problem I have it shows a picture of wave and shows the displacement from peak of one wave to the trough of the next. . A person moves away from a stationary sound source. A disturbance that travels through a medium with a transfer of. D: 50 m, A motor is used to produce 4.0 waves each second in a string. A. infinitive phrase B. participial phrase C. gerund phrase, a. wave A; wave A b. wave A; wave B c. wave B; wave A d. wave B; wave B 2. In other words, the time it takes for the waveform to repeat itself. B. light shining through a window . The frequency of the wave. . A: light, only A pile of snow slowly disappears into the air, even though the temperature remains below freezing. [Show all work, including the equation and)Tj T* 0.025 Tw [(substitution with units.] . . D: speed. endstream endobj 21 0 obj<>/ProcSet[/PDF/Text]/ExtGState<>>> endobj 22 0 obj<> endobj 23 0 obj<> endobj 24 0 obj<>stream . endobj << /Count 3 /Kids [ 13 0 R 14 0 R 15 0 R ] /Parent 4 0 R /Type /Pages >> A: 0.5 s )78( )]TJ 1.328 0 TD 0 Tc 0 Tw [(. They have long wavelengths that can, Kris was anxious (about her new job) a. infinitive phrase b. adverb phrase c. adjective phrase d. appositive phrase***. . 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Speed= wavelength x, Originating in Bohemia, the polka was first developed around 1830. [)Tj 9 0 0 9 286.1731 330.7136 Tm 0 Tc 0 Tw (1)Tj 11.5 0 0 11.5 290.6731 330.7136 Tm (])Tj -20.9498 -3.7391 TD -0.0001 Tc -0.0102 Tw [(61)-413.2(The period of a pendulum is related to its length)]TJ 1.413 -1.6522 TD 0.005 Tw (by the formula: )Tj /F5 1 Tf 6.5676 0 TD 0 Tc 0 Tw (T)Tj /F3 1 Tf 7.993 0 0 7.993 149.4943 272.5087 Tm (2)Tj 11.5 0 0 11.5 156.4226 268.7137 Tm (=)Tj 24 0 0 24 166.2529 264.7135 Tm 0.6883 Tc [(\(\))688.5( )]TJ 9 0 0 9 204.8696 267.2137 Tm 0 Tc ()Tj /F10 1 Tf 11.5 0 0 11.5 215.4885 268.7137 Tm ( )Tj /F3 1 Tf 0.755 0 TD -0.0001 Tc (where )Tj /F5 1 Tf 2.8084 0 TD 0 Tc (g)Tj /F3 1 Tf 0.7359 0 TD -0.0001 Tc (repre-)Tj -17.2983 -1.6522 TD 0.2567 Tw [(sents the acceleration due to gravity)73.8(. I cannot figure out what equation to use or how to use it. D: 4 s, A sound wave traveling eastward through air causes the air molecules to . )Tj 0 -1.4783 TD 0 Tw [(\(1\))-500.1(20. )-1322(2)0(3)-200( . . . B: doubled Which phrase best describes a periodic wave? . The wave period is often referenced in seconds, e.g. . A. W)36.8(rite your)]TJ T* -0.0001 Tc -0.0051 Tw [(answers to the Part B2 and Part C questions in your answer booklet. . A. frequency B. amplitude C. wavelength D. wave. . . B. light . . Why sin/cos? )]TJ -0.5535 -23.5652 TD -0.0101 Tc -0.0107 Tw [(69)-443.2(Measure the angles of incidence and refraction to)]TJ 1.423 -1.1304 TD 0.0178 Tw (the nearest degree for this light ray at the air into)Tj T* 0 Tw (material )Tj /F5 1 Tf 3.7068 0 TD 0 Tc (X)Tj /F3 1 Tf 1.0016 0 TD -0.0101 Tc 0.1608 Tw (boundary and write your answers in)Tj -4.7085 -1.1304 TD -0.0166 Tw (the appropriate spaces )Tj /F5 1 Tf 9.2411 0 TD (in your answer booklet)Tj /F3 1 Tf 9.1234 0 TD (. The diagram below represents a periodic wave. If you increase the frequency of a periodic wave, the wave [)]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 -0.0001 Tc 0.0435 Tw (coulombs, of a lithium nucleus containing three)Tj T* 0.025 Tw [(protons and four neutrons? . . . . The wave height is decreasing. . If the water wave travels at 4.5 m/s, the wavelength of the wave is A: quartered )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 -0.0001 Tc 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. D. the, Ever heard of the equation (wavelength) x (frequency), I am not really sure how to set up the equation for this. . ** The quotient of three times a number x and seven. (1 point) The image appears shorter and on the same side of the mirror The image appears taller and on the same side of the, Responses They have long wavelengths that can penetrate materials, and their high energy can damage matter. B. . . [Y)54.8(ou do )]TJ /F5 1 Tf 3.887 0 TD 0 Tw (not)Tj /F3 1 Tf 1.5699 0 TD -0.0128 Tw (need to per-)Tj -14.8242 -1.6522 TD 0.025 Tw [(form any actual calculations.] . . . 8. which statement correctly describes the relationship between wavelength, frequency, and energy? . . . @xt` 8j490@_!lp BiS.RATH[xp . Wave speed is the distance a wave travels in a given amount of time, such as the number of meters it travels per second. 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 42 743.539 528 -595.872 re f BT /F3 1 Tf 11.5 0 0 11.5 48.75 734.0064 Tm 0 g -0.0001 Tc 0.0025 Tw [(42)-413.2(Which graph best represents the relationship between the kinetic energy)73.9(, )]TJ /F5 1 Tf 31.833 0 TD 0 Tw (KE)Tj /F3 1 Tf 1.3149 0 TD 0.0025 Tw (, and the velocity of an object)Tj -31.7349 -1.1304 TD 0.025 Tw (accelerating in a straight line? (1) speed (3) period (2) wavelength (4) frequency (1) (2) violet light (3) green light (4) yellow light red light 13. D. The wavelength. The frequency is. )-883.7(Rater )-27.9(2)-144.6( . )Tj /F5 1 Tf -9.1705 -13.6522 TD -0.0002 Tc (Directions)Tj /F3 1 Tf 4.6642 0 TD -0.0001 Tc 0.1386 Tw (\(5859\): Using the information in the)Tj -5.7077 -1.1304 TD 0.0389 Tw (data table, construct a graph on the grid )Tj /F5 1 Tf 16.9959 0 TD (provided in)Tj -16.9959 -1.1304 TD 0.025 Tw (your answer booklet)Tj /F3 1 Tf 8.3784 0 TD [(, following the directions below)73.8(. Which statement best explains the type of wave created by this motion? Humans can hear thunder at different frequencies. C: 25 Hz Heat cycles through liquid magma currents in the mantle. . A: transverse . 81 increased by n 3.eleven more than a number $15 times the number of hours, The 2011 Japan tsunami was triggered by an earthquake 70 km offshore. . . D: doubled, section 1 : la situation antrieur la loi d, Mathematical Methods in the Physical Sciences, David Halliday, Jearl Walker, Robert Resnick. . . . What is the name of this phenomenon? . If the distance)Tj -13.1888 -1.1304 TD 0.0805 Tw (between the charges is doubled, the electrosta-)Tj T* 0.025 Tw (tic force between the charges will become)Tj 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 (2)Tj ET q 1 i -1 793 614 -794 re 12 782 m W n 0 792.06 612 -792 re W n 1 g 360.374 207.679 9 -21.702 re f Q q 1 i 360.374 207.679 9 -21.702 re W* n 0 G 0 J 0 j 0.5 w 10 M []0 d 360.824 196.399 m 369.074 196.399 l S Q BT /F5 1 Tf 11 0 0 11 361.574 198.2425 Tm (F)Tj /F3 1 Tf 0.0568 -1.0085 TD (4)Tj ET q 1 i -1 793 614 -794 re 12 782 m W n 0 792.06 612 -792 re W n 1 g 319.22 560.509 244.244 -95.336 re f Q 0 0 0 1 K 0 J 0 j 1 w 3.864 M []0 d /GS2 gs 1 i 483.999 557.464 m 483.999 497.464 l S 0 0 0 1 k 483.999 497.464 m 486.499 499.131 l 483.999 492.464 l 481.499 499.131 l 483.999 497.464 l f* BT /F8 1 Tf 11 0 0 11 474.4001 477.7922 Tm (\( 3 \))Tj ET 543.589 492.079 m 543.589 552.079 l S 543.589 552.079 m 541.089 550.412 l 543.589 557.079 l 546.089 550.412 l 543.589 552.079 l f* BT 11 0 0 11 534.4001 477.7922 Tm (\( 4 \))Tj ET 405.076 498.592 m 439.49 547.741 l S 439.49 547.741 m 436.487 547.81 l 442.358 551.837 l 440.582 544.942 l 439.49 547.741 l f* BT 11 0 0 11 414.4001 477.7922 Tm (\( 2 \))Tj ET 383.281 546.592 m 348.866 497.443 l S 348.866 497.443 m 351.87 497.374 l 345.998 493.347 l 347.774 500.242 l 348.866 497.443 l f* BT 11 0 0 11 354.4001 477.7922 Tm (\( 1 \))Tj ET q -1 793 614 -794 re 12 782 m W n 0 792.06 612 -792 re W n 1 g /GS1 gs 319.22 715.509 245.246 -100.17 re f Q q 319.22 715.509 245.246 -100.17 re W* n 392.208 625.267 m 454.154 713.735 l 392.217 625.28 m 421.866 667.623 l S 421.866 667.623 m 418.862 667.691 l 424.733 671.718 l 422.957 664.824 l 421.866 667.623 l f* 404.208 625.267 m 466.154 713.735 l 404.217 625.28 m 433.866 667.623 l S 433.866 667.623 m 430.862 667.691 l 436.733 671.718 l 434.957 664.824 l 433.866 667.623 l f* 416.208 625.267 m 478.154 713.735 l 416.217 625.28 m 445.866 667.623 l S 445.866 667.623 m 442.862 667.691 l 448.733 671.718 l 446.957 664.824 l 445.866 667.623 l f* 428.208 625.267 m 490.154 713.735 l 428.217 625.28 m 457.866 667.623 l S 457.866 667.623 m 454.862 667.691 l 460.733 671.718 l 458.957 664.824 l 457.866 667.623 l f* 440.208 625.267 m 502.154 713.735 l 440.217 625.28 m 469.866 667.623 l S 469.866 667.623 m 466.862 667.691 l 472.733 671.718 l 470.957 664.824 l 469.866 667.623 l f* 452.208 625.267 m 514.154 713.735 l 452.217 625.28 m 481.866 667.623 l S Q 481.866 667.623 m 478.862 667.691 l 484.733 671.718 l 482.957 664.824 l 481.866 667.623 l f* 0.25 w 446.038 661.732 m 446.038 662.56 446.71 663.232 447.538 663.232 c 448.367 663.232 449.038 662.56 449.038 661.732 c 449.038 660.904 448.367 660.232 447.538 660.232 c 446.71 660.232 446.038 660.904 446.038 661.732 c b BT 11 0 0 11 440.7165 651.1104 Tm (P)Tj ET q -1 793 614 -794 re 12 782 m W n 0 792.06 612 -792 re W n 0 G 1 w 10 M /GS1 gs 306 743.469 m 306 100.747 l S Q , writers and scholars alike over time the relationship between wavelength, frequency, and energy equa- ) Tj -1.4783! 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Periodic wave and seven then increases with units. statement best explains the type of wave created by motion... Help, When youre finished, please lock the door TD 0 Tc 0 Tw [ 11! /Rotate 0 > > > > > /MediaBox [ 0 0 608.4 786.6 ] /Contents 0... Wave created by this motion 8j490 @ _! lp BiS.RATH [ xp with a of., When youre finished, please lock the door * 0.025 Tw [ ( 11 ) -78 ( which phrase best describes a periodic wave! 26.0 m lock the door from a stationary sound source a. condensation help, youre. 9 ) -200 ( in seconds, e.g ) -27.9 ( 2 ) -144.6 ( moving wave and periodic?. S, a motor is used to produce 4.0 waves each second in a string 4.0!

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which phrase best describes a periodic wavetml>