

(5%) Problem 13: A camera with a 50.0 mm focal length lens is being used to...
(11%) Problem 9: A certain slide projector has a 100 mm focal length lens. > * 33% Part (a) How far away is the screen in meters, if a slide is placed 110 mm from the lens and produces a sharp image? d; = -21 Grade Summary Deductions 6% Potential 94% cancel notext HOME cos tan cotan asino acos atan) acotan() sinh cosh() tanh cotanh() Degrees Radians ( 7 8 9 E 1^ 4 5 6 1 2 3 -...
(13%) Problem 5: An object of height 2.9 cm is placed 29 cm in front of a diverging lens of focal length 17 cm. Behind the diverging lens, and 11 cm from it, there is a converging lens of the same focal length. - A 50% Part (a) Find the location of the final image, in centimeters beyond the converging lens. Grade Summary Deductions 0% Potential 100% 1 E sin( cos() tan() cotan() asin() acos atan acotan sinh cosh() |...
(13%) Problem 7: Consider a parallel plate capacitor having plates of area 1 .25 cmŕ that are separated by 0.016 mm of neoprene rubber. You may assume the rubber has a dielectric constant x- 6.7. > 50% Part (a) What is the capacitance in μF? Grade Summary Deductions Potential 0% 100% cotan atan cosh acos sinh( tanh) cotanhh 4 5 6 1 2 3 0 Submissions Attempts remaining: 6 (3% per attempt) detailed view asin acotan o Degrees oRadians DELCLEA...
(6%) Problem ll: An object with height 0.95 cm is placed a distance 21 cm in front of a thin converging lens with focal length 6.75 cm, as shown The focal point locations are indicated by the small black circles. A 20% Part (a) Calculate and enter a value for the distance between the image and the lens given the values in problem statement. di = cm Grade Summary Deductions 0% Potential 100% п 7 8 9 HOME E TA...
(14%) Problem 2: The "lead" in pencils is a graphite composition with a Young's modulus of about 1.10 N/m. * Calculate how much shorter (in mm) the length of the lead becomes in an automatic pencil if you tap it straight into the pencil with a force of 4.8 N. The lead is 0.55 mm in diameter and 61 mm long. Grade Summary AL = 3.391 Deductions 12% Potential 88% sin() cos t an() cotan) asin() acos() atan) acotan sinh)...
(13%) Problem 6: Consider an appliance that consumes 4.75 kW.h of energy per day. > A 50% Part (a) What is the average power consumption, in watts, of the appliance? P= o E sin() cos tan() cotan() asin() acos() atan() acotan() sinh) cosh() | tanh() cotanh() Degrees Radians ( 7 8 ^^^V 4 5 * 1 2 + - 0 VO BACKSPACE 9 6 3 . DEL Submit Hint Feedback I give up! Hints: 0% deduction per hint. Hints remaining:...
5%)
Problem 13: A camera with a 50.0 mm
focal length lens is being used to photograph a person standing
3.75 m away.
50%
Part (a) How far, in centimeters, must the film be from
the lens?
di =
50%
Part (b) If the film is s = 36.0 mm high, what
percent of the width of the film will a 1.5 m tall person take up?
|ho|/s (%) =
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(8%) Problem 11: A camera with a 50.0 mm focal length lens is being used to photograph a person standing 3.75 m away. A 50% Part (a) How far, in centimeters, must the film be from the lens? 50% Part (b) If the film is s = 36.0 mm high, what percent of the width of the film will a 135 m tall person take up? Wel/s (%) =
(10%) Problem 8: Consider a camera with a lens with focal length f and is being used to photograph a flower a distance do away × How far away from the lens must the film】 in the camera be in order for the image to be displayed on it? Give your answer as an equation using the variables given in the problem statement. Grade Summary Deductions Potential di = f(do )/do (-7) 20% 80% 78 9 HOME Submissions Attempts remaining:...
(25%) Problem 4: A camera that has a 50.0 mm focal length lens is being used to photograph a person standing 3.25 m away. A50% Part (a) How far, in centimeters, must the film be from the lens? d;= 1 A 50% Part (b) If the film is s = 36.0 mm high, what percent of the width of the film will a 1.6 m tall person take up?