The maximum spectral response of germanium is in the infrared region, while the maximum spectral response of silicon is in the visible light region. Germanium has a broader spectral response range compared to silicon.
Germanium has a maximum spectral response at around 1.8 µm wavelength, while silicon's maximum spectral response is at around 1.1 µm wavelength.
its ultraviolet region
A spectral curve is a mathematical concept used in the study of integrable systems, particularly in the field of integrable models in mathematical physics. It is a curve in the complex plane associated with a particular integrable system, providing information about the system's eigenvalues and other important properties. Spectral curves play a key role in understanding the dynamics and properties of integrable systems.
they are used to determine the level of detail represented by the image. if the image has low level of detail, the curve will be more curved. If the image has high level of detail, the curve tends to be vertical.
ultraviolet region
To determine the concentration of a sample using a calibration curve, you first need to measure the response of known standard samples with known concentrations. Then, plot a calibration curve by graphing the response against the concentration. Finally, measure the response of the unknown sample and use the calibration curve to determine its concentration by finding where its response falls on the curve.
Demand
The maximum spectral response of germanium and silicon is in the infrared region, not the X-ray region. Both materials are commonly used in infrared sensing applications due to their sensitivity in this range of the electromagnetic spectrum. X-rays are typically detected using materials such as cadmium telluride or mercury cadmium telluride.
You need to have a set measurement to begin any additional measurements of an image.
The meniscus is the curve at the liquid's surface. It is produced in response to the surface of the container or another object.
non-threshold