which phrase best describes a periodic waveking's college hospital neurology consultants

A: Both have the same frequency as their respective sources. The amplitude of the wave. )10( )10(. Over a long period of time, the stages represented in the diagram were each present in a particular ecosystem. One student moves the jump rope up and down, making a wave. . . Which best describes sound waves? . . As the)]TJ 1.428 -1.1304 TD 0.3733 Tw (speed of the merry-go-round is doubled, the )Tj T* 0.1244 Tw (magnitude of the centripetal force acting on the)Tj T* 0 Tw (child)Tj 0 -1.4783 TD -0.0001 Tc 0.0249 Tw [(\(1\))-500.1(remains the same)-1675.8(\(3\))-500.1(is halved)]TJ 0 -1.1304 TD [(\(2\))-500.1(is doubled)-4652.4(\(4\))-500.1(i)0.1(s quadrupled)]TJ -1.413 -2.8696 TD 0 Tc 0 Tw (17)Tj 1.413 0 TD 0.0199 Tc 0.5065 Tw (The magnitude of the electrostatic force)Tj 0 -1.1304 TD -0.0001 Tc 0.0855 Tw (between two point charges is )Tj /F5 1 Tf 12.596 0 TD 0 Tc 0 Tw (F)Tj /F3 1 Tf 0.5928 0 TD -0.0001 Tc 0.0855 Tw (. . . [Show all work, including the equa-)Tj -4.321 -1.1304 TD 0.025 Tw [(tion and substitution with units.] (c) What is the frequency of the wave? )]TJ T* [(40)-78( . What is the weight of the )Tj T* -0.0005 Tw (astronaut 6.37 )Tj /F9 1 Tf 6.08 0 TD 0 Tc 0 Tw ()Tj /F3 1 Tf 0.7983 0 TD (10)Tj 7.993 0 0 7.993 156.9135 609.7719 Tm (6)Tj 11.5 0 0 11.5 163.7785 605.9768 Tm -0.0001 Tc -0.0005 Tw (meters above the surface of)Tj -8.5252 -1.1304 TD -0.0002 Tc 0 Tw (Earth? . )-1470.4(3)0(2)-429.5( . . . . b) What is the wavelength of the wave? 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Wave speed is related to wavelength and wave frequency by the equation: Speed = Wavelength x Frequency. . )]TJ 1.413 -1.4783 TD [(\(1\))-500.1(a)0( 110-kg wrestler resting on a mat)]TJ 0 -1.1304 TD [(\(2\))-500.1(a)0( 90-kg man walking at 2 m/s)]TJ T* -0.0251 Tc [(\(3\))-475.1(a 70-kg long-distance runner traveling at 5 m/s)]TJ T* -0.0001 Tc [(\(4\))-500.1(a)0( 50-kg girl sprinting at 10 m/s)]TJ -1.428 -2.8696 TD -0.0151 Tc 0.2608 Tw [(16)-458.2(A child is riding on a merry-go-round. C: its wavelength . @xt` 8j490@_!lp BiS.RATH[xp B: 2 s The sound produced by the tuning fork will travel through the air as a C. they carry and transfer energy )-1090.6(School)-639.5( . help, When youre finished, please lock the door. . . . . . B: Hz m C: 1 s . ])Tj 0 -1.4783 TD [(\(1\))-500.1(2.6 m)-6603.4(\()0.2(3\))-500.1(13 m)]TJ 0 -1.1304 TD [(\(2\))-500.1(5.1 m)-6603.4(\()0.2(4\))-500.1(25 m)]TJ -1.413 -2.8696 TD -0.0274 Tw [(20)-413.2(What is the average power developed by a motor)]TJ 1.413 -1.1304 TD 0.0269 Tw (as it lifts a 400.-kilogram mass at constant speed)Tj T* 0.2594 Tw (through a vertical distance of 10.0 meters in )Tj T* 0.025 Tw (8.0 seconds? B: transverse wave with air molecules vibrating parallel to the direction of travel 2. C: 180 . 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. As the, Heat and pressure build up over time in the Earths core. (d) What is the speed of the wave? Hz can someone get me started with a formula? If you increase the frequency of a periodic wave, the wave 15 0 obj Which phrase best describes wavelength? endstream endobj 34 0 obj<>/ProcSet[/PDF/Text]/ExtGState<>>> endobj 35 0 obj<> endobj 36 0 obj<>stream )]TJ T* [(\(3\))-500.1(It increases, then decreases. T)73.8(urn to the last page and fold it along the perforations. [)]TJ 9 0 0 9 427.4954 491.5636 Tm 0 Tc 0 Tw (1)Tj 11.5 0 0 11.5 431.9954 491.5636 Tm (])Tj ET 1 g 413.775 678.359 26.125 -18.795 re f Q q 1 i 413.775 678.359 26.125 -18.795 re W* n 0 G 0 J 0 j 0.5 w 10 M []0 d 424.811 667.078 m 440.343 667.078 l S Q BT /F9 1 Tf 11 0 0 11 415.9052 664.234 Tm 0 g 0 Tc 0 Tw (=)Tj /F5 1 Tf 1.2756 0.4261 TD (h)Tj -0.3523 -0.7812 TD -0.0001 Tc (mv)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 43 62.64 528 -22.64 re f BT /F1 1 Tf 7 0 0 7 44 54.2205 Tm 0 g 0.0278 Tw (PhysicsJune 03)Tj /F3 1 Tf 10 0 0 10 299.6724 54.2205 Tm 0 Tw ([13])Tj 9 0 0 9 539.0142 54.2205 Tm -0.0002 Tc ([OVER])Tj ET 0 G 0 J 0 j 1 w 10 M []0 d 306.023 742.761 m 306.023 439.115 l S 126.203 428.082 m 485.844 428.082 l S Q Find and create gamified quizzes, lessons, presentations, and flashcards for students, employees, and everyone else. endstream endobj 61 0 obj<>/ProcSet[/PDF/Text]/ExtGState<>>> endobj 62 0 obj<> endobj 63 0 obj<> endobj 64 0 obj<>stream . . The cur-)Tj T* 0.3206 Tw (rent, potential difference, and resistance for)Tj T* 0.2097 Tw [(each lamp are listed in the data table below)73.8(. Frequency and wavelength Wavelength and wave speed***** Amplitude and wavelength Amplitude and frequency 2. . ])]TJ -0.5435 -12.3478 TD -0.0161 Tw [(64)-413.2(Using the circuit symbols found in the )]TJ /F5 1 Tf 17.2633 0 TD -0.0002 Tc 0 Tw (Reference)Tj -15.8503 -1.1304 TD 0 Tc (T)Tj 0.5188 0 TD -0.0001 Tc 0.1445 Tw (ables for Physical Setting/Physics,)Tj /F3 1 Tf 14.6744 0 TD (draw a cir-)Tj -15.1932 -1.1304 TD -0.0082 Tw (cuit showing how the lamps and battery are con-)Tj T* 0.025 Tw [(nected. This means that a period is best described as a row of elements from the foregoing.. . . . There are three general types of mechanical waves: . . 5 0 obj A wave is defined as "a periodic disturbance that moves through space." The disturbance could mean the high and low parts of an ocean wave, or the high and low pressure parts of a sound wave, etc. stream . . . } !1AQa"q2#BR$3br Answer in units of m. in which is the displacement. The pulse transferred A tuning fork vibrating in air produces sound waves. )Tj -2.6608 -1.4783 TD -0.0003 Tc (\(1\))Tj /F5 1 Tf 1.663 0 TD 0 Tc (W)Tj /F3 1 Tf 1.2189 0 TD -0.0001 Tc 0.025 Tw (would remain the same and the magni-)Tj -1.2189 -1.1304 TD (tude of )Tj /F5 1 Tf 3.2346 0 TD 0 Tc 0 Tw (F)Tj /F3 1 Tf 0.8678 0 TD -0.0001 Tc 0.025 Tw (would decrease. Waiting for Godot is Beckett's translation of his own original French-language play, En attendant Godot, and is subtitled (in English only) "a tragicomedy in . . The transverse position of an element of the medium at t = 0, x = 0 is y = - 3.00 cm, and the element has, I just need the formula to find the frequency (I forgot it and I'm stupid and for some reason when I googled the answer it didn't make any, 1.In which type of waves do the particles in a medium move parallel to the direction that the waves move? SIX|Pa\2uT#&0 True North Strong and Free - this phrase expresses hope and freedom of choice, speech and beliefs. Wetting Rain: Precipitation of .10 inches or more over most of the area specified. 123 Fifth Avenue, New York, NY 10160. . . . Which phrase best describes wavelength? )Tj 22.5 2.2609 TD -0.0093 Tw [(47)-413.2(Three forces act on a box on an inclined plane as)]TJ 1.413 -1.1304 TD 0.198 Tw [(shown in the diagram below)73.8(. . . . )78( )]TJ 1.328 0 TD 0 Tc 0 Tw [(. . IRYFED[>R&+N?a\S}w,`0JgJM? )-1322(4)0(4)-200( . )-1322(2)0(2)-200( . . The wavelength increases. What best describes the phrase in CAPS? Dramatic structure (also known as dramaturgical structure) is the structure of a dramatic work such as a book, play, or film. D: Both types of waves transfer energy. . What is the intensity of the wave at 5 km? . endstream endobj 74 0 obj<>/ProcSet[/PDF/Text]/ExtGState<>>> endobj 75 0 obj<> endobj 76 0 obj<>stream . Humans can hear thunder at different frequencies. Which phrase best describes wavelength? endobj A.) . )]TJ /F1 1 Tf 0 -3.6 TD -0.0113 Tc 0.1428 Tw [(Answer all questions in Part B2 and Part C. Record your answers in this)]TJ 0 -1.2 TD 0 Tw (booklet. )]TJ T* [(38)-78( . C. A longitudinal wave, where particles move perpendicular to the wave. In my book all it says is that the voltage is larger when the antenna is 1/2 the wavelength of the wave. Identify the choice that best completes the statement or answers the question MCQ01 [3 points]: The motion of a 2.0-kg particle connected to a spring is described by T : P ; . . B. transmission C: a microwave Which circuit uses the greatest power? B.) B. light )Tj T* -0.0001 Tc 0.025 Tw ([Neglect air resistance. . Speed= wavelength x, Originating in Bohemia, the polka was first developed around 1830. A: 1.5 10^-15 s . 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. . . First, the student touches an end of one)Tj T* 0.0221 Tw [(piece to one end of the other)73.8(. 16 0 obj A. waves with a short wavelength have a low frequency and high energy. . A. a longitudinal wave, where particles move in the same direction as the wave. What does the stu-)Tj T* 0.1067 Tw (dent definitely know about the initial magnetic)Tj T* 0.025 Tw [(properties of the two pieces of iron? . )Tj -0.0435 -2.1739 TD 0 Tc 0 Tw (6)Tj 0.913 0 TD -0.0001 Tc 0.059 Tw (The time it takes projectile )Tj /F5 1 Tf 11.6303 0 TD 0 Tc 0 Tw (B)Tj /F3 1 Tf 0.9569 0 TD -0.0001 Tc 0.059 Tw (to reach the level)Tj -12.5873 -1.1304 TD 0.025 Tw (surface is)Tj 0 -1.4783 TD [(\(1\))-500.1(4.5 s)-7048.4(\()0.2(3\))-500.1(3.0 s)]TJ 0 -1.1304 TD [(\(2\))-500.1(2.0 s)-7048.4(\()0.2(4\))-500.1(10. s)]TJ -0.913 -2.8696 TD 0 Tc 0 Tw (7)Tj 0.913 0 TD -0.0001 Tc 0.025 Tw (Approximately how high is the cliff? . A wave travels at 1,500 m/s with a frequency of 5 hertz. Which phrase describes the sound perceived by the person? The amplitude of the wave. )Tj /F3 1 Tf -1.413 -1.4783 TD -0.0001 Tc -0.0089 Tw [(18)-413.2(As a ball falls freely \(without friction\) toward the)]TJ 1.413 -1.1304 TD 0.025 Tw (ground, its total mechanical energy)Tj 0 -1.4783 TD 0 Tw [(\(1\))-500.1(decreases)]TJ 0 -1.1304 TD [(\(2\))-500.1(i)0.1(ncreases)]TJ T* 0.025 Tw [(\(3\))-500.1(remains the same)]TJ -1.413 -2.8696 TD 0.0238 Tw [(19)-413.2(A 0.50-kilogram ball is thrown vertically upward)]TJ 1.413 -1.1304 TD 0.0098 Tc 0.3651 Tw [(with an initial kinetic energy of 25 joules. . C: 1.3 m . . 3. Does the medium in which a wave travels move with, A. This is best explained . . . . . B: 2.0 m . The force of static friction acting on the box is)Tj 0 -1.4783 TD -0.0003 Tc 0.0252 Tw [(\(1\))-500.3(0)-0.2( N)]TJ 0 -1.1304 TD -0.0001 Tc 0.025 Tw [(\(2\))-500.1(between 0 N and 12 N)]TJ T* -0.0002 Tc [(\(3\))-500.2(12 N)]TJ T* -0.0001 Tc [(\(4\))-500.1(greater than 12 N)]TJ -1.413 -2.8696 TD 0 Tc 0 Tw [(12)-413.1(B)10.1(a)]TJ 2.5038 0 TD -0.0102 Tc (ll )Tj /F5 1 Tf 0.7271 0 TD 0 Tc (A)Tj /F3 1 Tf 0.8673 0 TD -0.0101 Tc -0.0106 Tw (of mass 5.0 kilograms moving at 20. meters)Tj -2.6851 -1.1304 TD -0.0001 Tc -0.0081 Tw (per second collides with ball )Tj /F5 1 Tf 11.8675 0 TD 0 Tc 0 Tw (B)Tj /F3 1 Tf 0.8899 0 TD -0.0001 Tc -0.0081 Tw (of unknown mass)Tj -12.7574 -1.1304 TD 0.1873 Tw (moving at 10. meters per second in the same)Tj T* 0.2222 Tw (direction. . B: 60 Hzx . What is the magnitude of the force)Tj T* 0.025 Tw (producing this acceleration? . . 9) refraction . . (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 ( ). A: vibrate east and west . A. adverbial clause*** B. adjective phrase C. infinitive phrase D. appositive phrase. )Tj /F3 1 Tf -1.413 -1.4783 TD -0.0001 Tc 0.0672 Tw [(22)-413.2(The diagram below shows a wire moving to the)]TJ 1.413 -1.1304 TD 0.2421 Tw (right at speed )Tj /F5 1 Tf 6.6019 0 TD 0 Tc 0 Tw (v)Tj /F3 1 Tf 0.973 0 TD -0.0001 Tc 0.242 Tw (through a uniform magnetic)Tj -7.5749 -1.1304 TD 0.025 Tw (field that is directed into the page. )78( )]TJ 1.328 0 TD 0 Tc 0 Tw [(. What are the types of periodic waves? *Energy* 3. A wave pulse is a disturbance that moves through a medium. What are the disadvantages of shielding a thermometer? A periodic wave transfers. . Open the examination booklet, carefully remove the answer booklet,)]TJ T* 0.0278 Tw [(and close the examination booklet. 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 25.582 766.731 561 -724.438 re f BT /F2 1 Tf 10 0 0 10 31.5816 735.5532 Tm 0 g -0.0001 Tc 0 Tw [(56)-616.5(______________________________________________)]TJ 0 -4.4 TD (57)Tj ET 0 G 0 J 0 j 0.5 w 10 M []0 d 48.259 690.553 m 580.032 690.553 l 47.695 660.553 m 579.468 660.553 l S BT 10 0 0 10 31.5816 601.5532 Tm (5859)Tj 0 -47.2 TD (60)Tj ET 48.259 128.553 m 155.225 128.553 l S BT 10 0 0 10 158.2808 129.5533 Tm 0 Tc (s)Tj ET 1 w 25.082 767.231 562 -725.438 re 163.84 129.553 m S 1 g 24.394 33.407 564 -21 re f BT /F3 1 Tf 10 0 0 10 283.382 24.9872 Tm 0 g -0.0003 Tc ([b])Tj ET 1 g 48.955 595.114 506.37 -440.005 re f Q 0 0 0 0.51 K 0 J 0 j 0.7 w 4 M []0 d /GS2 gs 1 i 216.219 567.876 m 216.219 192.89 l 223.717 567.876 m 223.717 192.89 l 231.218 567.876 m 231.218 192.89 l 238.719 567.876 m 238.719 192.89 l 246.22 567.876 m 246.22 192.89 l 253.721 567.876 m 253.721 192.89 l 261.219 567.876 m 261.219 192.89 l 268.72 567.876 m 268.72 192.89 l 276.221 567.876 m 276.221 192.89 l 283.722 567.876 m 283.722 192.89 l 291.22 567.876 m 291.22 192.89 l 298.721 567.876 m 298.721 192.89 l 306.219 567.876 m 306.219 192.89 l 313.72 567.876 m 313.72 192.89 l 321.221 567.876 m 321.221 192.89 l 328.719 567.876 m 328.719 192.89 l 336.22 567.876 m 336.22 192.89 l 343.721 567.876 m 343.721 192.89 l 351.222 567.876 m 351.222 192.89 l 358.72 567.876 m 358.72 192.89 l 366.221 567.876 m 366.221 192.89 l 373.722 567.876 m 373.722 192.89 l 381.223 567.876 m 381.223 192.89 l 388.718 567.876 m 388.718 192.89 l 396.219 567.876 m 396.219 192.89 l S BT /F8 1 Tf 11 0 0 11 205.2104 189.2446 Tm 0 0 0 1 k 0 Tc 0 Tw (0)Tj ET 216.192 465.636 m 396.192 465.636 l 216.192 473.214 m 396.192 473.214 l 216.192 480.793 m 396.192 480.793 l 216.192 488.372 m 396.192 488.372 l 216.192 200.383 m 396.192 200.383 l 216.192 207.962 m 396.192 207.962 l 216.192 215.541 m 396.192 215.541 l 216.192 223.119 m 396.192 223.119 l 216.192 238.277 m 396.192 238.277 l 216.192 245.855 m 396.192 245.855 l 216.192 253.434 m 396.192 253.434 l 216.192 261.013 m 396.192 261.013 l 216.192 276.17 m 396.192 276.17 l 216.192 283.749 m 396.192 283.749 l 216.192 291.327 m 396.192 291.327 l 216.192 298.906 m 396.192 298.906 l 216.192 314.063 m 396.192 314.063 l 216.192 321.642 m 396.192 321.642 l 216.192 329.22 m 396.192 329.22 l 216.192 336.799 m 396.192 336.799 l 216.192 351.956 m 396.192 351.956 l 216.192 359.535 m 396.192 359.535 l 216.192 367.114 m 396.192 367.114 l 216.192 374.692 m 396.192 374.692 l 216.192 389.849 m 396.192 389.849 l 216.192 397.428 m 396.192 397.428 l 216.192 405.007 m 396.192 405.007 l 216.192 412.586 m 396.192 412.586 l 216.192 427.743 m 396.192 427.743 l 216.192 435.321 m 396.192 435.321 l 216.192 442.9 m 396.192 442.9 l 216.192 450.479 m 396.192 450.479 l S BT 11 0 0 11 213.1918 180.7446 Tm (0)Tj 2.0804 0 TD [(0.20)-735.9(0.40)-826.8(0.60)-735.9(0.80)-826.8(1.00)-690.5(1.20)]TJ -4.1907 4.2727 TD (0.50)Tj 0 3.4091 TD (1.00)Tj T* (1.50)Tj T* (2.00)Tj 0 3.5 TD (2.50)Tj T* (3.00)Tj 0.0018 3.5 TD (3.50)Tj -0.0018 3.4091 TD (4.00)Tj T* (4.50)Tj 0.0055 3.0454 TD (5.00)Tj ET 216.192 502.136 m 396.192 502.136 l 216.192 509.714 m 396.192 509.714 l 216.192 517.293 m 396.192 517.293 l 216.192 524.872 m 396.192 524.872 l 216.192 538.636 m 396.192 538.636 l 216.192 546.214 m 396.192 546.214 l 216.192 553.793 m 396.192 553.793 l 216.192 561.372 m 396.192 561.372 l S 0 0 0 1 K 0.8 w 216.192 458.057 m 396.192 458.057 l 216.192 494.557 m 396.192 494.557 l 216.192 531.057 m 396.192 531.057 l S 1 w 216.192 567.914 180.5 -375.578 re S 0.8 w 336.262 567.626 m 336.262 192.765 l 306.185 567.626 m 306.185 192.765 l 276.108 567.626 m 276.108 192.765 l 246.031 567.626 m 246.031 192.765 l 366.339 567.626 m 366.339 192.765 l 216.192 420.164 m 396.192 420.164 l 216.192 382.271 m 396.192 382.271 l 216.192 344.378 m 396.192 344.378 l 216.192 306.484 m 396.192 306.484 l 216.192 268.591 m 396.192 268.591 l 216.192 230.698 m 396.192 230.698 l S BT /F2 1 Tf 11 0 0 11 246.7649 166.8017 Tm [(Length of P)30.1(endulum)]TJ /F8 1 Tf 9.6362 0 TD ( \(m\))Tj /F2 1 Tf 0 11 -11 0 180.8612 332.659 Tm [(Square of P)30(eriod)]TJ /F8 1 Tf 7.9714 0 TD ( \(s)Tj 0 9 -9 0 177.8612 432.5642 Tm (2)Tj 0 11 -11 0 180.8612 437.5681 Tm (\))Tj /F2 1 Tf 11 0 0 11 234.5297 581.6276 Tm [(Square of P)30.1(eriod vs.)40( Length)]TJ ET Both have the same frequency as their respective sources first developed around 1830 0.025... 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