Question

In: Physics

A spherical surface with a radius of curvature of 3.73 m is polished on both sides....

A spherical surface with a radius of curvature of 3.73 m is polished on both sides. An object sits 4.43 m in front of one side of the mirror. When the mirror is flipped around, how far does the image move?

Solutions

Expert Solution

Radius of curvaturee of spherical Paror R. R- 3.73 a. spherical Mirror is polised Both side. Hence one side Belaves as convex and other side as concave. First case when object is placed in front of concare mirror R=– 3.73 fa R = -1,865 C M M= – 4.43m (as per sign convention ) apply unirror Formula +-+ + 1 + C-4-43) 4.43 1.865-4.43 1.865 0. 262 T- u - 1.065 o – 0.262 = – 3.221 m. I 2.565 Here (-) tign Represted the Nature of Image For distaf I lol = 3.221m


Related Solutions

Standing on the surface of a small spherical moon whose radius is 6.30 104 m and...
Standing on the surface of a small spherical moon whose radius is 6.30 104 m and whose mass is 8.00 1018 kg, an astronaut throws a rock of mass 2.18 kg straight upward with an initial speed 37.4 m/s. (This moon is too small to have an atmosphere.) What maximum height above the surface of the moon will the rock reach? Options are : 5672 m, 5669 m, 5671 m, 5670 m Please Show Work. I got -752967.7802 .
Standing on the surface of a small spherical moon whose radius is 6.30 104 m and...
Standing on the surface of a small spherical moon whose radius is 6.30 104 m and whose mass is 8.00 1018 kg, an astronaut throws a rock of mass 2.18 kg straight upward with an initial speed 37.4 m/s. (This moon is too small to have an atmosphere.) What maximum height above the surface of the moon will the rock reach? Options are : 5672 m, 5669 m, 5671 m, 5670 m Please Show Work. I got -752967.7802 .
Given a surface system. Horizontal wind speed is 43 m s−1 . Radius of Curvature of...
Given a surface system. Horizontal wind speed is 43 m s−1 . Radius of Curvature of 0.25 km. Latitude is 41◦N. Mean air density of 1.14 kg m−3 . (a) Please find the Rossby Number for this system. Based on this information, what type of system is this likely to be? (b) Please find the Pressure Gradient for this system and, please find the relative central pressure of the system. (c) Please find the most likely direction of rotation of...
a concave spherical mirror has a radius of curvature of 7.00 cm. A)calculate the location of...
a concave spherical mirror has a radius of curvature of 7.00 cm. A)calculate the location of the imahe formed by qn 5.00 mm tall object whose distance from the mirror is 14 cm. answer in cm. b)calculate the size of the image formed by an 5 mm tall objext whose distanxe from the mirror is 7 cm. answer in mm. c)calculate the location of the image formed by a 5.00 mm tall object whose distance from the mirror is 1.75...
A convex spherical mirror has a radius of curvature of 9.60 cm. A) Calculate the location...
A convex spherical mirror has a radius of curvature of 9.60 cm. A) Calculate the location of the image formed by an 7.65-mm-tall object whose distance from the mirror is 18.0 cm. Answer in cm. B) Calculate the size of the image. Answer in mm. C) Calculate the location of the image formed by an 7.65-mm-tall object whose distance from the mirror is 10.0 cm. Answer in cm. D) Calculate the size of the image. Answer in mm. E) Calculate...
A hemispherical surface (half of a spherical surface) of radius R is located in a uniform...
A hemispherical surface (half of a spherical surface) of radius R is located in a uniform electric field of magnitude E that is parallel to the axis of the hemisphere. What is the magnitude of the electric flux through the hemispherical surface? A diagram is required as part of your answer
The electric flux passing through a spherical Gaussian surface of radius r = 1 m having...
The electric flux passing through a spherical Gaussian surface of radius r = 1 m having a charge +q at its center is 175.353 Nm2/C. Now, we replace the spherical Gaussian surface with a cubical one keeping the charge at its center. If the length of the cube sides is d = 2 m, then the value of the electric flux passing through each face of the cube is ? Blank 1. Calculate the answer by read surrounding text. Nm2/C?
Using the lens maker’s equation, find the radius of curvature needed for the leading surface (in...
Using the lens maker’s equation, find the radius of curvature needed for the leading surface (in other words, R1 =?) to optimize the power of the lens. Assume that the secondary surface has a fixed radius of curvature, R2 Hint: Write the power (P) as a function of R1, and apply the maximization condition. Yes, you need to use calculus. Ans:
You are looking toward a concave spherical mirror whose radius of curvature is 20 cm. Your...
You are looking toward a concave spherical mirror whose radius of curvature is 20 cm. Your line of sight is parallel to (but not along) the principal axis. How far from the mirror does your line of sight cross the principal axis?
The surface of a spherical conductor of radius a is kept at a temperature of u(φ)=300K+50K...
The surface of a spherical conductor of radius a is kept at a temperature of u(φ)=300K+50K cos(φ). The temperature inside is governed by the Laplace equation. Find an expression for the temperature everywhere inside the sphere. Evaluate the temperature at the center of the sphere.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT