The provided image shows three different situations (a-c). In each situation, the top image shows the actual object (a bright fluorescent sphere), while the bottom image shows the microscope image of the object. The resolving power of a microscope x is the smallest resolvable distance and is given by (0.61λ)/(NA). Are the following statements below true or false: In panel a, the radius of the object is rspot. In panel c, the two objects must have a separation distance D that is larger than x. In panel b, the two objects must have a separation distance D that is smaller than x. In panel a, the object must have a radius that is larger than x. In panel a, rspot must be 2x.
The provided image shows three different situations (a-c). In each situation, the top image shows the actual object (a bright fluorescent sphere), while the bottom image shows the microscope image of the object. The resolving power of a microscope x is the smallest resolvable distance and is given by (0.61λ)/(NA). Are the following statements below true or false: In panel a, the radius of the object is rspot. In panel c, the two objects must have a separation distance D that is larger than x. In panel b, the two objects must have a separation distance D that is smaller than x. In panel a, the object must have a radius that is larger than x. In panel a, rspot must be 2x.
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The provided image shows three different situations (a-c). In each situation, the top image shows the actual object (a bright fluorescent sphere), while the bottom image shows the microscope image of the object. The resolving power of a microscope x is the smallest resolvable distance and is given by (0.61λ)/(NA). Are the following statements below true or false:
- In panel a, the radius of the object is rspot.
- In panel c, the two objects must have a separation distance D that is larger than x.
- In panel b, the two objects must have a separation distance D that is smaller than x.
- In panel a, the object must have a radius that is larger than x.
- In panel a, rspot must be 2x.
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