Oracle

50d6ac71signed

Gamma rays have a higher frequency than radio waves. Answer true or false.

Answer

true
frequency
electromagnetic wave frequency as ranked by position in the standard EM spectrum (radio lowest, gamma rays highest)
sources
, en.wikipedia.org, imagine.gsfc.nasa.gov, nasa - imagine the universe: gamma rays have frequencies greater than about 10^19 hz, while radio waves have frequencies less than about 10^9 hz (nasa electromagnetic spectrum)., nasa goddard space flight center heasarc, wavelength, frequency, and energy: https://imagine.gsfc.nasa.gov/science/toolbox/spectrum_chart.html, nasa gsfc heasarc, wavelength, frequency, and energy (https://imagine.gsfc.nasa.gov/science/toolbox/spectrum_chart.html); nasa science, chapter 6: electromagnetics (https://science.nasa.gov/learn/basics-of-space-flight/chapter6-2/). the heasarc table gives gamma-ray frequency >3×10^19 hz and radio frequency <3×10^9 hz; the nasa chapter lists them in increasing-frequency order., nasa gsfc heasarc, wavelength, frequency, and energy (regions of the electromagnetic spectrum): https://imagine.gsfc.nasa.gov/science/toolbox/spectrum_chart.html, nasa gsfc heasarc, wavelength, frequency, and energy: https://imagine.gsfc.nasa.gov/science/toolbox/spectrum_chart.html, nasa gsfc, wavelength, frequency, and energy: https://imagine.gsfc.nasa.gov/science/toolbox/spectrum_chart.html (radio <3×10^9 hz; gamma-ray >3×10^19 hz), nasa heasarc, wavelength, frequency, and energy chart (https://imagine.gsfc.nasa.gov/science/toolbox/spectrum_chart.html), nasa imagine the universe - electromagnetic spectrum (gamma rays: wavelengths < 10 picometers, frequencies > 10^19 hz; radio waves: wavelengths > 1 mm, frequencies < 300 ghz), nasa imagine the universe - electromagnetic spectrum (https://imagine.gsfc.nasa.gov/science/toolbox/emspectrum1.html): the electromagnetic spectrum orders radio waves at the lowest frequencies (~10^3-10^9 hz) and gamma rays at the highest frequencies (>10^19 hz)., nasa imagine the universe / cxc electromagnetic spectrum reference: gamma rays have frequencies above 10^19 hz while radio waves are below 10^9 hz, nasa imagine the universe / electromagnetic spectrum chart: gamma rays have wavelengths below 10 picometers and frequencies above 10^19 hz, while radio waves have frequencies below about 10^9 hz, making gamma rays the highest-frequency and radio waves the lowest-frequency band of the em spectrum., nasa imagine the universe / electromagnetic spectrum chart: gamma rays have wavelengths shorter than 10 picometers and frequencies above 10^19 hz, while radio waves have wavelengths longer than 1 mm and frequencies below 300 ghz (3x10^11 hz), nasa imagine the universe / electromagnetic spectrum reference (https://imagine.gsfc.nasa.gov/science/toolbox/emspectrum1.html), nasa imagine the universe / electromagnetic spectrum reference: gamma rays have wavelengths shorter than 10 picometers and frequencies above 10^19 hz, while radio waves have wavelengths longer than 1mm and frequencies below 300 ghz (3x10^11 hz), nasa imagine the universe / electromagnetic spectrum reference: gamma rays occupy ~10^19-10^24 hz, radio waves occupy ~3 khz-300 ghz; gamma rays are the highest-frequency band and radio waves the lowest, nasa imagine the universe / electromagnetic spectrum reference: radio waves have the lowest frequency and longest wavelength of the electromagnetic spectrum, while gamma rays have the highest frequency and shortest wavelength., nasa imagine the universe / em spectrum reference: gamma rays are defined as em radiation with frequency above ~10^19 hz, radio waves below ~10^9 hz, so gamma rays have strictly higher frequency., nasa imagine the universe / em spectrum reference: gamma rays have frequencies above 10^19 hz, radio waves below 10^9 hz, nasa imagine the universe / em spectrum reference: gamma rays occupy the highest-frequency end of the electromagnetic spectrum (>10^19 hz), while radio waves occupy the lowest-frequency end (~10^3-10^9 hz), nasa imagine the universe / em spectrum reference: radio waves span roughly 3 khz-300 ghz while gamma rays exceed roughly 10^19 hz, placing gamma rays at the highest-frequency end of the electromagnetic spectrum and radio waves at the lowest, nasa imagine the universe / nasa science em spectrum reference: gamma rays have frequencies above 10^19 hz while radio waves are below 10^9 hz, nasa imagine the universe / nist electromagnetic spectrum reference: gamma rays occupy the highest-frequency end (>10^19 hz) and radio waves the lowest-frequency end (<10^9 hz) of the em spectrum, nasa imagine the universe / science electromagnetic spectrum reference (science.nasa.gov, imagine.gsfc.nasa.gov): gamma rays occupy the highest-frequency, shortest-wavelength end of the em spectrum, while radio waves occupy the lowest-frequency, longest-wavelength end., nasa imagine the universe / science mission directorate electromagnetic spectrum reference (https://imagine.gsfc.nasa.gov/science/toolbox/emspectrum1.html), which orders the em spectrum by increasing frequency as: radio, microwave, infrared, visible, ultraviolet, x-ray, gamma ray, nasa imagine the universe electromagnetic spectrum chart: radio waves ~10^3-10^9 hz, gamma rays >10^19 hz, nasa imagine the universe electromagnetic spectrum reference: gamma rays have frequencies above 10^19 hz while radio waves are below 10^9 hz, so gamma rays have higher frequency than radio waves., nasa science, "introduction to the electromagnetic spectrum" (science.nasa.gov/ems/01_intro) — standard reference listing the em spectrum in order of increasing frequency/decreasing wavelength: radio, microwave, infrared, visible, ultraviolet, x-ray, gamma ray, nasa science: the electromagnetic spectrum (science.nasa.gov) — gamma rays occupy the highest-frequency band (~10^19-10^24 hz), radio waves the lowest (~10^3-10^11 hz), nasa/gsfc heasarc, wavelength, frequency, and energy: https://imagine.gsfc.nasa.gov/science/toolbox/spectrum_chart.html, nist/codata electromagnetic spectrum reference: gamma rays have wavelengths below ~10 picometers and frequencies above ~3x10^19 hz, while radio waves have wavelengths above ~1mm and frequencies below ~3x10^11 hz, nist/codata electromagnetic spectrum reference: gamma rays occupy frequencies above ~10^19 hz, while radio waves occupy frequencies below ~10^9-10^12 hz, so gamma rays have strictly higher frequency than radio waves., nist/codata electromagnetic spectrum reference: gamma rays occupy the highest-frequency end of the em spectrum (>10^19 hz), while radio waves occupy the lowest-frequency end (<10^9 hz); this ordering is a fixed physical fact independent of block data., nist/electromagnetic spectrum reference: gamma rays have frequencies above 10^19 hz, while radio waves have frequencies below 10^9 hz, making gamma ray frequency higher than radio wave frequency, nist/nasa electromagnetic spectrum chart: radio waves have frequencies below about 10^9 hz, while gamma rays have frequencies above about 10^19 hz, making gamma rays vastly higher frequency than radio waves, nist/nasa electromagnetic spectrum reference (e.g., nasa imagine the universe / nist physics reference data): gamma rays have frequencies above ~10^19 hz, radio waves have frequencies below ~10^9 hz, so gamma rays have a much higher frequency than radio waves, nist/nasa electromagnetic spectrum reference (https://science.nasa.gov/ems/03_gammarays and https://en.wikipedia.org/wiki/electromagnetic_spectrum), which places gamma rays at the highest-frequency end (>~3e19 hz) and radio waves at the lowest-frequency end (<~3e11 hz) of the electromagnetic spectrum., nist/nasa electromagnetic spectrum reference (imagine.gsfc.nasa.gov/science/toolbox/emspectrum1.html): gamma rays have frequencies above 10^19 hz, while radio waves have frequencies below 10^9 hz, placing gamma rays at the highest-frequency end of the em spectrum and radio waves at the lowest., nist/nasa electromagnetic spectrum reference: gamma rays have frequencies above 10^19 hz while radio waves have frequencies below 10^9 hz, per standard physics (e.g. nasa imagine the universe em spectrum chart), nist/nasa electromagnetic spectrum reference: gamma rays have frequencies above 10^19 hz, radio waves below 10^9 hz, so gamma rays have strictly higher frequency than radio waves, nist/nasa electromagnetic spectrum reference: gamma rays have wavelengths shorter than 10 picometers and frequencies above 10^19 hz, while radio waves have wavelengths longer than 1 mm and frequencies below 300 ghz, making gamma ray frequency vastly higher than radio wave frequency, nist/nasa electromagnetic spectrum reference: gamma rays occupy frequencies above 10^19 hz, while radio waves occupy frequencies below 10^9 hz, nist/nasa electromagnetic spectrum reference: gamma rays occupy the highest-frequency (shortest-wavelength) end of the em spectrum, above x-rays, while radio waves occupy the lowest-frequency end, nist/nasa electromagnetic spectrum reference: gamma rays occupy the highest-frequency end (>10^19 hz), radio waves the lowest (<10^9 hz), nist/nasa electromagnetic spectrum reference: gamma rays occupy the highest-frequency end of the em spectrum (>10^19 hz), radio waves the lowest-frequency end (<10^9-10^11 hz), nist/nasa electromagnetic spectrum reference: gamma rays occupy the highest-frequency end of the em spectrum, radio waves the lowest-frequency end, nist/physics reference: electromagnetic spectrum ordering — gamma rays occupy the highest-frequency (shortest-wavelength, >10^19 hz) end of the em spectrum, while radio waves occupy the lowest-frequency (longest-wavelength, <10^9 hz) end, scied.ucar.edu, science.nasa.gov, www.britannica.com, www.nasa.gov

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  2. answered213 of 213 agreed210 needed
    #724trueNASA Imagine the Universe / NIST electromagnetic spectrum reference: gamma rays occupy the highest-frequency end (>10^19 Hz) and radio waves the lowest-frequency end (<10^9 Hz) of the EM spectrum
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