Reflected
The color that an object appears to be is determined by the wavelengths of light that are reflected off the object and into our eyes. Different colors correspond to different wavelengths of light that are absorbed or reflected by the object's surface.
Yes, when light strikes an object, it can either be reflected (bounced off) or absorbed (taken in by the object). The amount of light that is reflected or absorbed depends on the properties of the object, such as its color and material.
The color of an object depends on the wavelengths of light that are reflected by the object's surface. When light strikes an object, some wavelengths are absorbed while others are reflected. The reflected wavelengths then determine the color that we perceive. For example, an object appears red because it reflects red light and absorbs other colors.
The color that an object appears to be depends on the wavelengths of visible light that are absorbed and reflected by the object's surface. Objects absorb certain wavelengths and reflect others, with the reflected wavelengths determining the color we perceive.
An object appears a certain color because it reflects certain wavelengths of light and absorbs others. The color of light that is reflected is the color that we perceive, while the colors that are absorbed are not reflected back to our eyes.
The color that an object appears to be is determined by the wavelengths of light that are reflected off the object and into our eyes. Different colors correspond to different wavelengths of light that are absorbed or reflected by the object's surface.
Yes, when light strikes an object, it can either be reflected (bounced off) or absorbed (taken in by the object). The amount of light that is reflected or absorbed depends on the properties of the object, such as its color and material.
The color of an object depends on the wavelengths of light that are reflected by the object's surface. When light strikes an object, some wavelengths are absorbed while others are reflected. The reflected wavelengths then determine the color that we perceive. For example, an object appears red because it reflects red light and absorbs other colors.
The color that an object appears to be depends on the wavelengths of visible light that are absorbed and reflected by the object's surface. Objects absorb certain wavelengths and reflect others, with the reflected wavelengths determining the color we perceive.
An object appears a certain color because it reflects certain wavelengths of light and absorbs others. The color of light that is reflected is the color that we perceive, while the colors that are absorbed are not reflected back to our eyes.
When all colors are absorbed by an object, the object appears black. This is because no light is reflected back to our eyes, resulting in the absence of color and a perception of blackness.
When all colors are absorbed by an object, it appears black to our eyes. This is because black is the absence of any reflected light. The object absorbs all incoming light, allowing no colors to be reflected back.
The color of an object is determined by the specific wavelengths of light that are reflected or transmitted by the object. The color we perceive is the sum of the light that is reflected or transmitted, and not the light that is absorbed by the object.
When light strikes an opaque object, the light is either absorbed, transmitted, or reflected. The object appears to be a certain color because it reflects certain wavelengths of light and absorbs the rest.
Visible light interacts with an object by either being absorbed, transmitted, or reflected. The color of the object is determined by the wavelengths of light that are reflected off its surface. When light is absorbed, it can cause the object to heat up. Transmitted light passes through the object without being absorbed or reflected.
Reflected
a. blue and yellow light are being reflected by the object.b. blue and yellow light are being absorbed by the object.c. green light is absorbed by the object.d. green light is reflected by the object.