EXPERIMENT: 4 Object: To find the wavelength of Sodium light by Newton’s ring. A thin air film is formed between the plate and the lens. In a Newton’s rings experiment the diameter of the 15 th ring was found to be 0.59 cm and that of the 5 th ring is 0.336 cm. [June 2005, Set No. admin November 22, 2020. NEWTON'S RINGS are the circular interference pattern first discovered by Newton. When a plano-convex lens is placed over a flat glass plate, then a thin air layer is formed between glass plate and a convex lens. Newton gave the following list of colours from the centre … These rings are known as Newton’s rings. Newton’s Rings. Thin film interference with films of varying thickness (Newton’s rings): Rings are fringes of equal thickness. 2] Sol: The given data are. This can be seen from the formula r 2 = (m + ½) λa, (3), as r 2 α λ 1. These concentric rings are known as " Newton's Rings ". This question has been asked and answered previously. An air wedge film can be formed by placing a Plano-convex lens on a flat glass plate. They are observed when light is reflected from a plano-convex lens of a long focal length placed in contact with a plane glass plate. The global geometry of Newton’s rings. EXPERIMENT 8 To Determine the Wavelength of Sodium Light using Newton’s Rings Please read additional instructions on the bench for setting up the PC and camera for this experiment Introduction Newton’s rings are interference fringes of equal thickness which are produced in the air film be-tween a convex surface and an optical flat. Let’s consider a dark ring with radius r at a point where the separation is t. The right angled triangle shown in red has a … 0 5,024 2 minutes read. Newton’s ring experiment with animation. alternate dark and bright rings (see g.1(b)) with the point of contact between the lens and the plate at the center. Formation of fringes When a plano-convex lens with large radius of curvature is placed on a plane glass plate such that its curved surface faces the glass plate, a wedge air film (of gradually increasing thickness) is formed between the lens and the glass plate. Newton’s Rings Experiment Aim: To determine the wavelength of monochromatic light (sodium light) using At the point of contact of the lens and the glass plate, the thickness of the film is effectively zero but due to reflection at the lower surface of air film from denser medium, an additional path of λ / 2 is introduced. When white light is used in Newton’s rings experiment the rings are coloured, generally with violet at the inner and red at the outer edge. (a) Experimental set-up (b) Newton’s rings Figure 1 In general, the path di erence between the re ected light beams which are undergoing interference (for oblique incidence) is given by Apparatus used: A Plano convex lens of large radius of curvature, optical arrangement for Newton’s rings, plane glass plate, sodium vapour lamp and traveling microscope. Formula used: … Newtons Ring. If the radius of curvature of the lens is 100 cm, find the wave length of the light. Newton’s ring is a process in which Circular bright and dark fringes obtained due to air film enclosed between a Plano-convex lens and a glass plate. If the radius of curvature of plano-convex lens is much greater than distance ‘r’ and the system is viewed through the above, the pattern of dark & bright ring is observed. At the center the thickness of the air film formed between lens and glass plate is zero. View Newton's ring.pdf from MATH 111 at Pandit Deendayal Petroleum University. 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