The ability to distinguish close objects is called resolution or resolving power.
It is important in microscopy as well as in other fields involving optical instruments, such as Photography.
A light microscope, using a high-power objective with oil immersion, can achieve a resolution of about 0.2 μm (micrometers). An electron microscope has, in practice, a resolving power about 100 times that, namely 1 to 2 nm (nanometers).
Resolving power.
B resolution. Resolution refers to the ability to distinguish between two closely spaced objects or details in an image or signal.
Resolving power.
Resolving power.
Resolving power.
Resolving power.
B resolution. Resolution refers to the ability to distinguish between two closely spaced objects or details in an image or signal.
Resolving power.
Resolving power.
Resolving power.
Resolution describes the ability of a microscope to distinguish two objects as being separate. It is the smallest amount of detail that can be observed by a microscope.
Resolution is the ability of a microscope to form images with fine detail. It refers to the ability to distinguish between closely spaced objects in an image. High resolution means that the microscope can produce sharp, clear images with fine detail.
Angular resolution refers to the ability of an optical instrument, such as a telescope or camera, to distinguish between two closely spaced objects in the field of view. It is a measure of the smallest angle between two point sources that can still be resolved as separate entities. Higher angular resolution means better ability to distinguish fine details in an image.
The property of the lens that describes its ability to show two adjacent objects as discrete entities is resolution. Resolution refers to the ability of the lens to distinguish between two adjacent objects and present them as separate and distinct entities in the image.
The resolution of a microscope refers to its ability to distinguish between two closely spaced objects. A higher resolution means that the microscope can produce clearer and more detailed images by separating small details that are close together. Resolution is an important factor in determining the quality of images produced by a microscope.
Resolution in science refers to the ability to distinguish between two separate points or objects. In microscopy, resolution is the clarity or level of detail in an image. In other scientific contexts, resolution can refer to the smallest discernible change in a measurement.
The minimum distance between two objects before they are seen as one object is known as the resolution limit or the resolving power of the imaging system. It is the ability to distinguish between two separate objects rather than seeing them as a single entity.