there are three choices, the correct one is raindrops
The red line corrected for the unequal number of photons emitted across the visible spectrum would likely be a line that is flat or relatively constant across the visible spectrum. This correction aims to account for the differing sensitivity of the human eye to light of different wavelengths, providing a more accurate representation of how light exposure affects biological processes.
The red line that represents the same action spectrum corrected for the unequal number of protons emitted across the visible spectrum is typically referred to as the "quantum yield" or "relative efficiency" curve. This curve accounts for variations in photon emission and absorption across different wavelengths, providing a more accurate representation of the overall effectiveness of a process, such as photosynthesis or photobiological reactions. By normalizing the action spectrum, it highlights how effectively light at various wavelengths can drive the desired biological response.
Some major ground features and their typical spectral reflectance curves include vegetation, which shows high reflectance in the visible spectrum and low reflectance in the near-infrared spectrum; water, which has low reflectance across all wavelengths; soil, which typically has higher reflectance in the visible spectrum and lower reflectance in the near-infrared spectrum; and urban areas, which have varying spectral reflectance depending on surface materials like asphalt, concrete, and buildings.
False. The Sun radiates electromagnetic energy in all parts of the spectrum, not just the tiny sliver that is "visible light". Additionally, the Sun gives off hard radiation in the form of alpha and beta particles, and a considerable "solar wind" of charged atomic nuclei.
The sun emits a continuous spectrum, which includes all wavelengths of light across the electromagnetic spectrum. This spectrum results from the thermal radiation of the sun's surface.
The red line corrected for the unequal number of photons emitted across the visible spectrum would likely be a line that is flat or relatively constant across the visible spectrum. This correction aims to account for the differing sensitivity of the human eye to light of different wavelengths, providing a more accurate representation of how light exposure affects biological processes.
LED light bulbs emit light across the visible light spectrum, which includes all the colors of the rainbow. This spectrum ranges from violet to red, with different wavelengths corresponding to different colors. LED bulbs can be designed to emit specific colors or a combination of colors to create white light.
Yes, the spectrum of white light from the sun is continuous, containing all colors of the rainbow. This continuous spectrum is due to the sun emitting light across a wide range of wavelengths.
The red line that represents the same action spectrum corrected for the unequal number of protons emitted across the visible spectrum is typically referred to as the "quantum yield" or "relative efficiency" curve. This curve accounts for variations in photon emission and absorption across different wavelengths, providing a more accurate representation of the overall effectiveness of a process, such as photosynthesis or photobiological reactions. By normalizing the action spectrum, it highlights how effectively light at various wavelengths can drive the desired biological response.
Although rainbow lorikeets are literally all of the colours of the rainbow, their colouring makes them almost impossible to detect in their natural habitat of Australian native plants, with their colourful flowers. Their colours make them well camouflaged.
The primary source of visible rays is the sun, which emits light across the visible spectrum. Other sources include artificial lighting such as light bulbs and LEDs. When visible light reflects off objects, it allows us to see the colors and shapes of our surroundings.
The spectrum from daylight or fluorescent light is called continuous because it contains a smooth and uninterrupted range of colors across the visible light spectrum. This means that all wavelengths within the visible light range are present without gaps or missing portions, unlike the discrete lines seen in some other types of lighting spectra.
In the electromagnetic spectrum, shorter wavelengths correspond to higher frequencies, and longer wavelengths correspond to lower frequencies. For example, in the visible light spectrum, blue light has a higher frequency and shorter wavelength compared to red light. This relationship holds true across all regions of the spectrum.
A white object reflects all colors of light equally across the visible spectrum. This is because white is the combination of all colors.
Silver is the material that reflects the most light, as it has a high reflectivity across the visible spectrum. This is why silver is often used in mirrors and reflective surfaces.
White light is made up of photons of various colors across the visible spectrum, including red, orange, yellow, green, blue, indigo, and violet. When these different colors of light are combined, they create the perception of white light to the human eye.
Yes. The sun produces light across the entire visible spectrum. Its just that the yellow is most apparent. If the sun didn't produce blue light we wouldn't be able to see the color blue by sunlight..