The meaning of h in the Planck's constant is the photon having a frequency of one unit in any scale.
wavelength since frequency =hc/lambda h=plancks constant and c=velocity of light
No, gas constant is having a value of 8.314Jk-1mol-1 Whereas plancks constant has a value of 6.6*10-31
I assume the equation you're looking for is E=hv or E=hc/lambda. h is plancks constant and c is speed of light in m/s. lambda is in metres
Planck's constant is a fundamental constant in physics that relates the energy of a photon to its frequency. It is denoted by the symbol ( h ) and has a value of approximately ( 6.626 \times 10^{-34} ) joule-seconds. This constant is crucial in quantum mechanics, as it helps explain how energy is quantized at the atomic and subatomic levels. Essentially, it shows that energy comes in discrete packets, or "quanta."
Planck's constant relates the energy level of radiation due to electrons moving from one energy level to another, by the formula Energy = (Planck's constant) x (frequency of radiation). Therefore the dimensions of Planck's constant are (energy)/(frequency) which means Joules x seconds In fact Planck's constant = 6.67 x 10-34 joule.seconds.
(E) Photon=E2-E1= hv h=Plancks constant v=frequency
wavelength since frequency =hc/lambda h=plancks constant and c=velocity of light
No, gas constant is having a value of 8.314Jk-1mol-1 Whereas plancks constant has a value of 6.6*10-31
The h in the hc stands for plancks constant which is 6.63 x10^-34, which is negative. :)
I assume the equation you're looking for is E=hv or E=hc/lambda. h is plancks constant and c is speed of light in m/s. lambda is in metres
The value of Planck's constant is approximately 6.626 x 10^-34 m^2 kg / s. It is a fundamental physical constant that relates the energy of a photon to its frequency.
H in chemistry stands for hydrogen. In Physics is stands for Planck's Constant In measurement it stands for hecto~ ( prefix meaning 100)
The energy of electromagnetic radiation is directly proportional to its frequency. This relationship is described by Planck's equation: E = hν, where E is the energy, h is Planck's constant, and ν is the frequency. This means that as the frequency of electromagnetic radiation increases, so does its energy.
wavelength = h/p (h= Plancks constant = 6.636*10^-34 kg*m^2/s) p=m*v Combining these gives us v=h/(m*wavelength)=8.37*10^6 m/s
The energy of a photon can be calculated using the formula E = h*f, where E is energy, h is Planck's constant (6.626 x 10^-34 J.s), and f is frequency. Plugging in the values, the energy of a photon with a frequency of 4.1 x 10^7 Hz would be approximately 2.72 x 10^-26 Joules.
Planck's constant relates the energy level of radiation due to electrons moving from one energy level to another, by the formula Energy = (Planck's constant) x (frequency of radiation). Therefore the dimensions of Planck's constant are (energy)/(frequency) which means Joules x seconds In fact Planck's constant = 6.67 x 10-34 joule.seconds.
Such a melange of dimensions would involve length3 mass2/time4 .Not only has it no physical significance, but, fortunately for all of us,there is no such formula.