58 through 67 GO 61 SSM 59 Lenses with given radii . Object O stands in front of a thin lens, on the central axis. For this situation, each problem in Table 34-7 gives object distance p , index of refraction n of the lens, radius r 1 of the nearer lens surface, and radius r 2 of the farther lens surface. (All distances are in centimeters.) Find (a) the image distance i and (b) the lateral magnification m of the object, including signs. Also, determine whether the image is (c) real (R) or virtual (V), (d) inverted (I) from object O or noninverted (NI), and (e) on the same side of the lens as object O or on the opposite side. Table 34-7 Problem 58 through 67: Lenses with Given Radii. See the setup for these problems. p n r 1 r 2 (a) i (b) m (c) R/V (d) I/NI (e) Side 58 +29 1.65 +35 ∞ 59 +75 1.55 +30 –42 60 +6.0 1.70 +10 –12 61 +24 1.50 –15 –25 62 +10 1.50 +30 –30 63 +35 1.70 +42 +33 64 +10 1.50 –30 –60 65 +10 1.50 –30 +30 66 +18 1.60 –27 +24 67 +60 1.50 +35 –35
58 through 67 GO 61 SSM 59 Lenses with given radii . Object O stands in front of a thin lens, on the central axis. For this situation, each problem in Table 34-7 gives object distance p , index of refraction n of the lens, radius r 1 of the nearer lens surface, and radius r 2 of the farther lens surface. (All distances are in centimeters.) Find (a) the image distance i and (b) the lateral magnification m of the object, including signs. Also, determine whether the image is (c) real (R) or virtual (V), (d) inverted (I) from object O or noninverted (NI), and (e) on the same side of the lens as object O or on the opposite side. Table 34-7 Problem 58 through 67: Lenses with Given Radii. See the setup for these problems. p n r 1 r 2 (a) i (b) m (c) R/V (d) I/NI (e) Side 58 +29 1.65 +35 ∞ 59 +75 1.55 +30 –42 60 +6.0 1.70 +10 –12 61 +24 1.50 –15 –25 62 +10 1.50 +30 –30 63 +35 1.70 +42 +33 64 +10 1.50 –30 –60 65 +10 1.50 –30 +30 66 +18 1.60 –27 +24 67 +60 1.50 +35 –35
58 through 67 GO 61 SSM 59 Lenses with given radii. Object O stands in front of a thin lens, on the central axis. For this situation, each problem in Table 34-7 gives object distance p, index of refraction n of the lens, radius r1 of the nearer lens surface, and radius r2 of the farther lens surface. (All distances are in centimeters.) Find (a) the image distance i and (b) the lateral magnification m of the object, including signs. Also, determine whether the image is (c) real (R) or virtual (V), (d) inverted (I) from object O or noninverted (NI), and (e) on the same side of the lens as object O or on the opposite side.
Table 34-7Problem 58 through 67: Lenses with Given Radii. See the setup for these problems.
Experimental Research Report Template
Title: Paper Airplane Flight. Materials: Paper, ruler, tape
Procedure: Fold paper into different airplane designs, such as dart, glider, or classic. Measure and record the distances each design flies when thrown with the same force. Discuss aerodynamics and the factors that affect flight distance.
Introduction: (What do you expect to learn? What is the purpose of this lab? List any questions this experiment will answer.)
Hypothesis: (Predict the outcome(s) of the experiment, must be in an “if…then format.)
Materials: (What equipment and materials did you need for this experiment assignment? Describe how any equipment was connected. Also mention any special hardware or connections. List the name and amount of each item used.)
Procedures: (What steps did you take to accomplish this lab assignment? Include Safety Precautions.)
Data Collection: (Record the data that is required at each step of the…
Title: Studying the Relationship Between Drop Height and Bouncing Height of a Ball: You can drop balls of different materials (e.g., rubber, plastic, ping pong) from various heights onto a flat surface and measure the height of their bounce using a ruler.
Introduction: (What do you expect to learn? What is the purpose of this lab? List any questions this experiment will answer.)
Hypothesis: (Predict the outcome(s) of the experiment, must be in an “if…then format.)
Materials: (What equipment and materials did you need for this experiment assignment? Describe how any equipment was connected. Also mention any special hardware or connections. List the name and amount of each item used.)
Procedures: (What steps did you take to accomplish this lab assignment? Include Safety Precautions.)
Data Collection: (Record the data that is required at each step of the lab: tables, charts, graphs, sketches, etc.)
Data Analysis: (Explain you…
A traveler at an airport takes an escalator up one floor as in the figure below. The moving staircase would itself carry him upward with vertical velocity component v between entry and exit points separated by height h. However, while the escalator is moving, the hurried traveler climbs the
steps of the escalator at a rate of n steps/s. Assume that the height of each step is hs.
(a) Determine the amount of chemical energy converted into mechanical energy by the traveler's leg muscles during his escalator ride given that his mass is m. (Use any variable or symbol stated above along with the following as necessary: g.)
energy =
(b) Determine the work the escalator motor does on this person. (Use any variable or symbol stated above along with the following as necessary: g.)
work =
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