I=a2
The relationship between the intensity and energy of light is that the intensity of light is directly proportional to its energy. This means that as the intensity of light increases, so does its energy.
In the context of "intensity vs frequency," the relationship between intensity and frequency is that they are inversely related. This means that as intensity increases, frequency decreases, and vice versa.
The relationship between frequency and intensity of a phenomenon is that they are often inversely related. This means that as the frequency of the phenomenon increases, the intensity tends to decrease, and vice versa.
The relationship between sound intensity and distance is that sound intensity decreases as distance from the sound source increases. This is because sound waves spread out as they travel, causing the intensity of the sound to decrease with distance.
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less light intensity gives a better vision
The relationship between absorbance intensity of incident radiation and intensity of transmitted radiation is inverse. As absorbance increases, transmitted intensity decreases. This is due to the absorption of light energy by the material, leading to a reduction in the amount of light passing through it.
The relationship between light intensity and photosynthetic rate is that if the intensity of the light is high then the rate of photosynthesis will increase. However the rate of photosynthesis will only increase to an extent after intensity of light reaches a certain point photosynthesis rate will stay still.
The relationship between sound intensity level and the perception of loudness is that as the sound intensity level increases, the perception of loudness also increases. This means that the louder the sound, the more intense it is perceived to be by our ears.
The relationship between wavelength and hue is that shorter wavelengths correspond to cooler colors like blue and longer wavelengths correspond to warmer colors like red. This relationship is similar to the relationship between brightness and intensity, where higher brightness levels correspond to higher intensity levels.
The relationship between the distance from a source of electromagnetic waves and the electromagnetic wave intensity at that distance is inversely proportional. This means that as the distance from the source increases, the intensity of the electromagnetic waves decreases.
Intensity is a physical quantity that measures the amount of energy per unit area, while decibel is a logarithmic scale used to express the relative intensity of a sound compared to a reference level. The relationship between intensity and decibel is non-linear; an increase in intensity by a factor of 10 corresponds to an increase of 10 decibels.