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A: Given Data: The speed of the wave is: v=280 m/sec The wavelength of the wave is: λ=2 m The frequency…
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A: Given data: Speed (v) = 300,000 km/s Frequency (f) = 100 MHz Required: Wavelength (λ)
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Q: the frequency of a radio wave
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A: Given: Velocity of wave v = 230 m/s. Wavelength of wave λ=1.15 m.
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A: Given data Wave length = 0.5 m Speed = 3×108m/s Frequency =?
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Q: A light wave has a frequencey of 8 X 1010 Hz. What is the wavelength (in meters) of this light?
A: Frequency of wave"√" = 8×10^¹⁰ Hz To find wavelength ,
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A: Given data: The infrared waves Wavelength (λ) = 20 mm = 20×10-3 m Required: Frequency (f)
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A: Given data: The visible light Frequency (f) = 2.4×1014 Hz Required: The wavelength (λ) in…
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A: Given Let Wavelength = Y Y= 1*10^(-12) m C = 3*10⁸ m/s
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A: Given that the frequency of an electromagnetic wave is 200 megahertz (MHz).Write the expression for…
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A: The frequency of the radio waves, f= 56500 Hz The velocity of the radio waves, c = 3×108 m/s
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A: Given : wavelength of the microwave , λ = 0.032 m we have, Frequency, ν = cλ where, c is the…
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A: Given data: An FM radio wave Frequency (f) = 102 MHz Required: Wavelength (λ) in meters
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Q: what is the frequency of a light of wavelength 7.4 x 10^-7 m?
A: Given:wavelength=7.4x10-7 mFind the frequency of a light.Now,Wavelength is related to frequency…
Q: What is the wavelength of the 56,500 hz radio wave used by radio controlled clocks and wristwatches
A: Frequency, f=56500 Hz Speed of radio wave, v=3×108 m/s Wavelength, λ=vf=3×10856500=5.31×103 m=5309 m
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A: Given : Frequency (f) = 53500 Hz
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A: The given values are, f=95500000 Hzv=3.00×108 m/s
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A: Given data: Wavelength, λ=3 m Velocity, V=1200 m/s Our question is to find the frequency (f) of…
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A: A radio wave is an electromagnetic wave, the EM wave's frequency and wavelength is related by…
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A: Given data The wavelength of the radiation is given as λ=1.5 km.
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A: Given The wavelength of the microwaves in a microwave oven is λ = 12 cm = 12 x 10-2 m. The frequency…
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A: Details given: Power of light emitted by laser = 1.0mW Diameter of beam = 1.0mm
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A: Given: λ = 0.0255m, f= 8.503x10-3 Hz
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A: Given Data: The frequency of light sample A is, fA=4.1×1015 Hz The frequency of light sample B is,…
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Q: what is the frequency of a radio wave with a wavelength of 2.2 m?
A: Given data: Wavelength of a radio wave (λ) = 2.2 m Required: Frequency (f)
Q: What is the frequency of a signal whose wavelength is 8 cm?
A: Frequency and wavelength are inversely proportional to each other. The product of frequency and…
Q: What is the frequency of an electromagnetic wave with a wavelength of 3x108 meter
A: c=frequency*wavelength c=3*10^8 m/s wavelength=3*10^8 m
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Q: Light is an electromagnetic wave and travels at a speed of 21.34 m/s. The human eye is most…
A: Given: The speed of the wave is 21.34 m/s. The wavelength of the wave is 18.32 m.
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A: Frequency=velocity/wavelength
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A: Given: The speed of the wave is 7.3 m/s. The wavelength of the wave is 1.4 m.
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- Oh no! Our expert couldn't answer your question. Don't worry! We won't leave you hanging. Plus, we're giving you back one question for the inconvenience. Here's what the expert had to say: Hi and thanks for your question! This is a writing assignment that is out of scope of Q&A. If you need writing help, please click Contact Research (Essays) link at the bottom of the page. We've credited a question back to your account. Apologies for the inconvenience. Ask Your Question Again 7 of 10 questions left until 1/22/21 Question Hello,I wanna asked if my answer is correct... For A to B I am using Ta+Va=Tb+Vb And I get Ta= 0 since there is no velocity Tb = ½(50)(VB)²=25(VB)² Va=½ks² = ½(2000)(0.6)² =600N Vb=mgh =(50)(9.81)(0.9)= 441.45 Then Vb =2.52 m/s And then using vertical motion from b to c to find t Y=Y initial+(V sin36.87)tBC+1/2a(tBC)² Then t = 0.609s And find d using d=(vcos36.87)t d=1.23m Is my answer and method correct? Sorry for my bad englishOther than from the ranges of wavelengths shown inFigure 1.7, can you think of a way to distinguish radiowaves from infrared waves? Visible from infrared? That is,could you design a radio that could be tuned to infraredwaves? Could living beings “see” in the infrared region?Save Answer A ray of light traveling in air strikes a boundary at an angle of 79.7 degrees to the normal. After crossing the boundary, the ray travels at an angle of 20.4 degrees to the normal. What is the speed of light in meters per second in the second medium? (Give answer in scientific notation with 2 digits right of the decimal; for example, 1.23e+5. Do not include unit in answer.) A Moving to the next question prevents changes to this answer. Ouocti: on 6oEO
- Which of the following is the unit for frequency? Select all apply. Hertz (Hz) second meter 1/second Decibel (dB) 1/meter The news station I listen to is called “WTOP 103.5.” This means that they broadcast radio wave at a frequency of 103.5 MHz. What is the wavelength of this radio wave, in meters? Your answer needs to have 2 significant figures, including the negative sign in your answer if needed. Do not include the positive sign if the answer is positive. No unit is needed in your answer, it is already given in the question statement.Kindly provide the solution to the following question using the GRASS method. (Unit: Gravitational, Electric, and Magnetic Fields). The images attached are the formulas for this unit and the question. Please make sure to show all your work using the GRASS (given, required, analysis, solution, and statement) method and using formulas from this unit (Gravitational, Electric, and Magnetic Fields).Answer in a step-by-step format, add diagrams, and detailed side notes for a better understanding. For a more clear response please answer on paper Thank you!
- The plot below shows ray paths and arrival times for P-wave seismic signalsrecorded at a geophone located 60m from a source.a. Using the plots below, what can you deduce about the relationshipbetween the velocities of each of the layers?b. Imagine you can extend the spread of geophone to some large offset. From your answer above, would you expect to see the refracted wave alonglayers as first arrival?Direction: Solve the following problems by reading the statement of the problem carefully. Write the given, required to find, fomula, solution and final answer complete with SI unit/s. Calculate the energy of a photon of a green light (ʎ=0.52 ). (Convert the wavelength to nanometer first.)Sakalam, a light-emitting device, requires 10,068.68 ZW (Zeptowatt) of power every 500 milliseconds (ms). The energy of light being produced by Sakalam is equal to the amount of energy required to run the device at the given time. Refer to the given tables for the useful relations, necessary constants and definitions of variables, and colors corresponding to wavelengths of visible light. a. How much energy (in Joules) is equivalent to the power required by Sakalam at the given time? b. What is the wavelength of light (in nanometers, nm) being produced by Sakalam? c. What is the color of the light being produced by Sakalam?
- What is the wavelength in meters observed with a frequency of (4.5x10^15)? Answer with 2 significant figures and it must be in scientific notation. Note: Your answer is assumed to be reduced to the highest power possible. Your Answer: Answer x10 unitsB MP HW 05 - PHY 122 (0001,0002 x b My Questions | bartleby A courses.maine.edu/d2l/le/content/143857/viewContent/5018006/View E Apps f (7) Facebook A Paragon Login A Member Login | NJ.. + DocuSign - Enter y. t realtor.como for pr.. O NJDOBI Licensee Se. Online Forms | NJ R... O Other bookmarks (MP HW 05 Conceptual Question 25.10 3 of 9 > I Review | Constants (Figure 1) shows two points near a positive point charge. Part A What is the ratio V2/V of the electric potentials? Express your answer using two significant figures. Figure Πνα ΑΣφ V2/Vị = 1 mm Request Answer Submit + Part B + + What is the ratio E2/E1 of the electric field strengths? 3 mm Express your answer using two significant figures. Ην ΑΣφ ? o Reflect in ePortfolio 9:55 AM O Type here to search 2/25/2021 近Which of the following is least reasonable regarding the "water hole"? Group of answer choices It consists of frequencies which are greater than the frequencies of atmospheric emissions. It relates to the natural frequencies of vibration of hydroxyl (OH) and hydrogen (H), respectively. It occurs in that part of the electromagnetic spectrum where the galactic "noise" from stars and interstellar clouds is minimized. It is considered the "electromagnetic oasis" for interstellar communication. It corresponds to wavelengths in the 18-21 cm range.