B) higher frequency. Planck's constant doesn't change.
If a wave travels at a constant speed, the greater its wavelength, the lower its frequency. This is because frequency and wavelength are inversely proportional in a wave, according to the formula: speed = frequency x wavelength.
Good luck, Greater wavelength=TV. frequency= the number of wave cycles(peak, trough, peak) per time unit. The higher the frequency, the more times the wave cycles, and the shorter the wavelength. Greater Energy=Ultraviolet lamp. By Placks constant, E(energy) =h(planck's constant which is the energy of a photon divided by it's frequency) / f(the frequency of that photon). Planck's constant is almost irrelevant, so the greater the frequency, the greater the energy. Greater frequency=Ultraviolet lamp. Planck's constant and light spectrum. Greater Momentum= Ultraviolet lamp. Electron diffraction, Wavelength=h(planck's constant) / momentum. rearrange it as M=h/W. The greater the wavelength, the smaller the momentum, and visa versa.
The greater the frequency the greater the energy. related by the equation:E=hf. E is the energy, h is a constant called planks constant and has a value of6.626068 × 10-34 m2 kg / sf is the frequency.
Yes. For electromagnetic radiation, the formula is E = hv, where E is energy in Joules, h is Planck's constant, 6.626 × 10-34 m2 kg/s and v is frequency. So the energy of a wave is directly proportional to the frequency. The greater the frequency, the greater the energy.
the higher the frequency the higher the energy
If a wave travels at a constant speed, the greater its wavelength, the lower its frequency. This is because frequency and wavelength are inversely proportional in a wave, according to the formula: speed = frequency x wavelength.
Good luck, Greater wavelength=TV. frequency= the number of wave cycles(peak, trough, peak) per time unit. The higher the frequency, the more times the wave cycles, and the shorter the wavelength. Greater Energy=Ultraviolet lamp. By Placks constant, E(energy) =h(planck's constant which is the energy of a photon divided by it's frequency) / f(the frequency of that photon). Planck's constant is almost irrelevant, so the greater the frequency, the greater the energy. Greater frequency=Ultraviolet lamp. Planck's constant and light spectrum. Greater Momentum= Ultraviolet lamp. Electron diffraction, Wavelength=h(planck's constant) / momentum. rearrange it as M=h/W. The greater the wavelength, the smaller the momentum, and visa versa.
The greater the frequency the greater the energy. related by the equation:E=hf. E is the energy, h is a constant called planks constant and has a value of6.626068 × 10-34 m2 kg / sf is the frequency.
Punishment is not a reinforcer. there is Negative Punishment and Positive Punishment, and also Negative Reinforcement and Positive Reinforcement.*Negative Punishment is a consequence withdrawn following a response that causes a behavior to occur with less frequency.*Negative Reinforcement is a consequence withdrawn following a response that causes a behavior to occur with greater frequency.*Positive Punishment is a consequence delivered following a response that causes a behavior to occur with less frequency.*Positive Reinforcement is a consequence delivered following a response that causes a behavior to occur with greater frequency.
"I will tune my radio to the frequency for my favorite radio station."While this is one correct usage of the word, to convey the more general meaning of the word, consider the following sentence:"Typically, the greater the volume of liquids consumed, the greater the frequency of urination."
Yes. For electromagnetic radiation, the formula is E = hv, where E is energy in Joules, h is Planck's constant, 6.626 × 10-34 m2 kg/s and v is frequency. So the energy of a wave is directly proportional to the frequency. The greater the frequency, the greater the energy.
the higher the frequency the higher the energy
The greater the energy,the larger the frequency&the shorter (smaller) the wavelength.Given the relationship between wavelength&frequency - the higher the frequency,the shorter the wavelength-it follows that short wavelengths are more energetic than long wavelengths.
Electromagnetic radiation consists of waves with different wavelengths and frequencies. The frequency and energy of electromagnetic radiation are directly proportional—higher frequency waves have higher energy. This relationship is described by the formula E=hf, where E is energy, h is Planck's constant, and f is frequency.
Energy. (if you mean E=h*ni) If you're referring to sound then the greater the frequency the smaller the wave length. (v=lambda*f)
We must keep in memory the following formula connecting wave velocity, wave frequency and wavelength. Namely, c = v l v is nu - frequency and l - lambda the wavelength Since for a constant value of wave velocity, v and l are inversely related. So as wavelength is low, then its frequency goes higher.
violet light