Magnifying Power of Terrestrial Telescope when Image Forms at Infinity Solution

STEP 0: Pre-Calculation Summary
Formula Used
Magnifying Power of Telescope = Focal Length of Objective/Focal Length of Eyepiece
Mtele = fo/fe
This formula uses 3 Variables
Variables Used
Magnifying Power of Telescope - Magnifying Power of Telescope is the ability of a telescope to enlarge objects, making them appear closer and more detailed than they actually are.
Focal Length of Objective - (Measured in Meter) - Focal Length of Objective is the distance between the objective lens and the point where the object is in focus in a microscope or telescope.
Focal Length of Eyepiece - (Measured in Meter) - Focal Length of Eyepiece is the distance between the eyepiece lens and the point where the image is formed in a microscope or telescope.
STEP 1: Convert Input(s) to Base Unit
Focal Length of Objective: 100 Centimeter --> 1 Meter (Check conversion ​here)
Focal Length of Eyepiece: 4 Centimeter --> 0.04 Meter (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Mtele = fo/fe --> 1/0.04
Evaluating ... ...
Mtele = 25
STEP 3: Convert Result to Output's Unit
25 --> No Conversion Required
FINAL ANSWER
25 <-- Magnifying Power of Telescope
(Calculation completed in 00.004 seconds)

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Terrestrial Telescope Calculators

Length of Terrestrial Telescope
​ Go Length of Terrestrial Telescope = Focal Length of Objective+4*Focal Length of Erecting lens+(Least Distance of Distinct Vision*Focal Length of Eyepiece)/(Least Distance of Distinct Vision+Focal Length of Eyepiece)
Magnifying Power of Terrestrial Telescope when Image Forms at Least Distance of Distinct Vision
​ LaTeX ​ Go Magnifying Power of Telescope = (1+Focal Length of Eyepiece/Least Distance of Distinct Vision)*Focal Length of Objective/Focal Length of Eyepiece
Length of Terrestrial Telescope when Image Forms at Infinity
​ Go Length of Terrestrial Telescope = Focal Length of Objective+Focal Length of Eyepiece+4*Focal Length of Erecting lens
Magnifying Power of Terrestrial Telescope when Image Forms at Infinity
​ LaTeX ​ Go Magnifying Power of Telescope = Focal Length of Objective/Focal Length of Eyepiece

Magnifying Power of Terrestrial Telescope when Image Forms at Infinity Formula

​LaTeX ​Go
Magnifying Power of Telescope = Focal Length of Objective/Focal Length of Eyepiece
Mtele = fo/fe

what is Terrestrial Telescope?

A terrestrial telescope is a type of telescope designed for viewing objects on land, rather than celestial objects in space. It uses an objective lens to gather light and create an image, an erecting lens (or prism) to flip the image upright, and an eyepiece lens to magnify the view for clear, detailed observation. This configuration allows users to see distant objects with accurate orientation, making it ideal for applications like wildlife observation, navigation, and surveillance. Unlike astronomical telescopes, terrestrial telescopes provide an upright image, which is crucial for practical land-based uses.

How to Calculate Magnifying Power of Terrestrial Telescope when Image Forms at Infinity?

Magnifying Power of Terrestrial Telescope when Image Forms at Infinity calculator uses Magnifying Power of Telescope = Focal Length of Objective/Focal Length of Eyepiece to calculate the Magnifying Power of Telescope, Magnifying Power of Terrestrial Telescope when Image Forms at Infinity formula is defined as the ratio of the focal length of the objective lens to the focal length of the eyepiece lens, which determines the magnification of an object when its image is formed at infinity. Magnifying Power of Telescope is denoted by Mtele symbol.

How to calculate Magnifying Power of Terrestrial Telescope when Image Forms at Infinity using this online calculator? To use this online calculator for Magnifying Power of Terrestrial Telescope when Image Forms at Infinity, enter Focal Length of Objective (fo) & Focal Length of Eyepiece (fe) and hit the calculate button. Here is how the Magnifying Power of Terrestrial Telescope when Image Forms at Infinity calculation can be explained with given input values -> 25 = 1/0.04.

FAQ

What is Magnifying Power of Terrestrial Telescope when Image Forms at Infinity?
Magnifying Power of Terrestrial Telescope when Image Forms at Infinity formula is defined as the ratio of the focal length of the objective lens to the focal length of the eyepiece lens, which determines the magnification of an object when its image is formed at infinity and is represented as Mtele = fo/fe or Magnifying Power of Telescope = Focal Length of Objective/Focal Length of Eyepiece. Focal Length of Objective is the distance between the objective lens and the point where the object is in focus in a microscope or telescope & Focal Length of Eyepiece is the distance between the eyepiece lens and the point where the image is formed in a microscope or telescope.
How to calculate Magnifying Power of Terrestrial Telescope when Image Forms at Infinity?
Magnifying Power of Terrestrial Telescope when Image Forms at Infinity formula is defined as the ratio of the focal length of the objective lens to the focal length of the eyepiece lens, which determines the magnification of an object when its image is formed at infinity is calculated using Magnifying Power of Telescope = Focal Length of Objective/Focal Length of Eyepiece. To calculate Magnifying Power of Terrestrial Telescope when Image Forms at Infinity, you need Focal Length of Objective (fo) & Focal Length of Eyepiece (fe). With our tool, you need to enter the respective value for Focal Length of Objective & Focal Length of Eyepiece and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Magnifying Power of Telescope?
In this formula, Magnifying Power of Telescope uses Focal Length of Objective & Focal Length of Eyepiece. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Magnifying Power of Telescope = (1+Focal Length of Eyepiece/Least Distance of Distinct Vision)*Focal Length of Objective/Focal Length of Eyepiece
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