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It takes exactly 2 distinct points to uniquely define a line, i.e. for any two distinct points, there is a unique line containing them.
The intersection of two distinct planes is a line. The set of common points in the line lies in both planes.
A.True
It takes three points to make a plane. The points need to be non-co-linear. These three points define a distinct plane, but the plane can be made up of an infinite set of points.
Yes
Resolution refers to a microscope's ability to produce a clear and detailed image by distinguishing between two distinct points. It is determined by the numerical aperture and wavelength of light used in the microscope.
the resolution (resolving power) of a microscope means its ability to distinguish two items at its highest magnification. the same goes for any other optical instrument. its like watching two lines which are extremely close to each other with unaided eye and then watching them with the microscope. with the unaided eye they will appear as one line. with the microscope they will appear distinct.
it is the ability to clearly determine two separate points or objects as singular distinguished entities
The two big advantages are: 1. Magnification: the electron microscope can be used to visualize individual molecules and even atoms! 2. Resolution: The ability of a microscope to distinguish two closely lying points as separate entities.
No, resolution is a microscope's ability to distinguish between two separate points or objects that are close together. Magnification is the microscope's power to increase an object's apparent size.
Resolution in a microscope refers to the minimum distance between two points that can still be distinguished as separate entities. It is a measure of the microscope's ability to distinguish fine details in an image. A higher resolution means that the microscope can provide clearer and more detailed images with better clarity and sharpness.
No. Two distinct points define a single line.
Resolution in microscopy refers to the ability to distinguish between two separate points or structures within a specimen. The resolving power of a microscope determines the minimum distance at which two distinct points can be observed as separate entities. A higher resolution allows for clearer images with greater detail and sharpness.
The resolving power of a microscope determines the sharpness of its images. Resolving power refers to the microscope's ability to distinguish between two points that are close together. A microscope with higher resolving power will produce clearer and sharper images.
The clarity of the picture produced by a microscope is called resolution. Resolution refers to the ability of the microscope to distinguish between two separate points or objects in an image. A higher resolution means finer details can be observed in the image.
The resolution of a microscope is a key factor in determining how well it can show small details. Resolution is the ability of a microscope to distinguish between two separate points in an image. Other factors that can affect the quality of the image produced by a microscope include magnification, lens quality, and lighting.
Resolution refers to the ability of a microscope lens to show fine details of the object being observed. It is the minimum distance between two points at which they can still be distinguished as separate entities.