Question

In: Physics

Two thin lens (f1 = 15cm, f2 = −30cm) are separated by a distance d =...

Two thin lens (f1 = 15cm, f2 = −30cm) are separated by a distance d = 10cm.
(a) (10 points) Find the matrix of the system.
(b) (15 points) If 2cm tall object is placed on the distance 30cm to the left from the first lens. Find
the position and the size of the image by using matrix method.
(c) (25 points) Find positions of the cardinal points of the system. Find the position and the size of
the image by using cardinal points of the system. (Object is the same as in part b)

Solutions

Expert Solution


Related Solutions

Two converging thin lenses (f1 = 15 cm and f2 = 20 cm) are separated by...
Two converging thin lenses (f1 = 15 cm and f2 = 20 cm) are separated by 25 cm. A candle is placed in 40 cm in front of the first lens. a) Where will the image of the candle be created by the two-lens system? b) Describe the properties of the image. c) Describe how the image changes as the lenses are moves closer together. d) The lenses are now moved right next to each other. What is the equivalent...
Two thin converging lenses of focal lengths f1 = 11.0cm and f2 = 20.0cm are separated...
Two thin converging lenses of focal lengths f1 = 11.0cm and f2 = 20.0cm are separated by 25.0cm. An object is placed 33.0cm to the left of lens 1. Find the position and magnification of the final image.
Two converging lenses (f1 = 9.40 cm and f2 = 5.50 cm) are separated by 17.9...
Two converging lenses (f1 = 9.40 cm and f2 = 5.50 cm) are separated by 17.9 cm. The lens on the left has the longer focal length. An object stands 12.4 cm to the left of the left-hand lens in the combination. Locate the final image relative to the lens on the right. Obtain the overall magnification. Is the final image real or virtual? With respect to the original object, is the final image upright or inverted and is it...
Two thin lenses each with focal lengths of f1 = +12.0 cm and f2 = +10.0...
Two thin lenses each with focal lengths of f1 = +12.0 cm and f2 = +10.0 cm; are located 30.0 cm apart with their optical axes aligned as shown. An object is placed 35.0 cm from the first lens. After the light has passed through both lenses, at what distance from the second lens will the final image be formed?
Two charges each +q are initially separated by a distance d. If you triple the distance,...
Two charges each +q are initially separated by a distance d. If you triple the distance, the magnitude of the force does what?
DUAL DEPENDANT QUESTIONS A system of two converging lens separated by a distance of 10 cm....
DUAL DEPENDANT QUESTIONS A system of two converging lens separated by a distance of 10 cm. The first lens has a focal length of 5.0 cm and the second has a focal length of 8.0 cm. An object is 15 cm away from the first lens. What is the distance of the final image from the second lens? Is it real or virtual We conclude this is 3.6 cm; virtual Now.... A system of two converging lens separated by a...
Two forces, vector F1 and F2, act at a point. The magnitude of F1 is 9.50...
Two forces, vector F1 and F2, act at a point. The magnitude of F1 is 9.50 N, and its direction is an angle 65.0 degrees above the negative direction of x-axis in the second quadrant. The magnitude of F2 is 5.50 N, and its direction is an angle 53.1 degrees below the negative direction of x-axis in the third quadrant. Part A: What is the x-component of the resultant force? Part B: What is the y-component of the resultant force?...
BTwo slits separated by a distance of d = 0.12 mm are located at a distance...
BTwo slits separated by a distance of d = 0.12 mm are located at a distance of D = 670 mm from a screen. The screen is oriented parallel to the plane of the slits. The slits are illuminated by light of wavelength λ = 525 nm. The interference pattern shows a peak at the centre of the screen (m = 0) and then alternating minima and maxima. A- What is the path difference between the waves from the two...
Two point charges +Q and -2Q are separated by a distance d on the X-axis. A)...
Two point charges +Q and -2Q are separated by a distance d on the X-axis. A) What is the electric field in the middle of these two point charges? B) Draw the electric filed lines for these two charges. C) Can you find a position where the net electric field from these two charges is Zero?
Two point charges +Q and -2Q are separated by a distance d on the X-axis. If...
Two point charges +Q and -2Q are separated by a distance d on the X-axis. If a third point charge is placed in the two charges’ plane, A) Where would the third charge be placed to experience a zero net force from the two point charges? B) Is the third charge must be positive or negative?
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT