The Griffith Observatory in Los Angeles includes an astronomical refracting telescope (Griffith telescope) with an objective lens of diameter 305 mm and focal length 5.03 m - AQA - A-Level Physics - Question 1 - 2018 - Paper 4
Question 1
The Griffith Observatory in Los Angeles includes an astronomical refracting telescope (Griffith telescope) with an objective lens of diameter 305 mm and focal length... show full transcript
Worked Solution & Example Answer:The Griffith Observatory in Los Angeles includes an astronomical refracting telescope (Griffith telescope) with an objective lens of diameter 305 mm and focal length 5.03 m - AQA - A-Level Physics - Question 1 - 2018 - Paper 4
Step 1
Calculate the wavelength of light for which the Griffith telescope has a minimum angular resolution of 1.8 × 10⁻⁶ rad.
96%
114 rated
Only available for registered users.
Sign up now to view full answer, or log in if you already have an account!
Answer
To calculate the wavelength, we will use the formula for angular resolution:
heta=D1.22λ
where:
(\theta) is the angular resolution in radians (1.8 × 10⁻⁶ rad),
(\lambda) is the wavelength,
(D) is the diameter of the lens (305 mm or 0.305 m).
Rearranging the formula to solve for wavelength gives:
λ=1.22θD
Substituting the values:
λ=1.22(1.8×10−6)(0.305)≈4.4×10−7 m
Step 2
Calculate the focal length of the eyepiece lens so that an observer can just resolve the two objects when observing them through the Griffith telescope.
99%
104 rated
Only available for registered users.
Sign up now to view full answer, or log in if you already have an account!
Answer
Using the typical human eye's angular resolution: 3.2 × 10⁻⁴ rad.
The formula relating the eyepiece focal length (f_e) can be derived as follows, using the relation:
M=θobjectθeye=ftfe
Where (f_t) is the focal length of the telescope, which is given as 5.03 m.
Substituting the angular resolutions:
M=1.8×10−63.2×10−4≈177.78
Now solving for focal length:
fe=Mft=177.78×5.03≈893.5 m
Step 3
Deduce whether this telescope is suitable to obtain a detailed view of Apophis.
96%
101 rated
Only available for registered users.
Sign up now to view full answer, or log in if you already have an account!
Answer
Given the diameter of Apophis is 325 m and its distance from Earth is 3.0 × 10⁶ km:
Using the angular resolution from the previous question:
θ=Dd
Where:
(d) is the size of Apophis (325 m),
(D) is the distance to Apophis in meters (3.0 × 10⁶ km = 3.0 × 10^{9} m).
Calculating the angular resolution:
θ=3.0×109325≈1.08×10−7 rad
Since the angular resolution of the telescope is 1.8 × 10⁻⁶ rad, which is larger than the resolution needed to view Apophis, the telescope is not suitable for detailed observation.