Question: module link: https://drive.google.com/file/d/1rNAhdNXBFmo9kCbAmW3yaC-qCOCZnFWu/view?usp=sharing please answer, follow the instructions, please answer with explanations and solutions , i will give a high rate, please answer properly answer

 module link: https://drive.google.com/file/d/1rNAhdNXBFmo9kCbAmW3yaC-qCOCZnFWu/view?usp=sharingplease answer, follow the instructions, please answer with explanations

module link: https://drive.google.com/file/d/1rNAhdNXBFmo9kCbAmW3yaC-qCOCZnFWu/view?usp=sharing

please answer, follow the instructions, please answer with explanations and solutions , i will give a high rate, please answer properly answer all items

and solutions , i will give a high rate, please answer properlyanswer all items Exercise 2.3. Think Critically! A. Instructions: Solve the followingproblems below and write your answer on a separate sheet of paper.

Exercise 2.3. Think Critically! A. Instructions: Solve the following problems below and write your answer on a separate sheet of paper. Show your solution. 1. A diverging lens has a focal length of -12.8 cm. An object is placed 34.5 cm from the lens's surface. Determine the image distance. 2. A 4.00-cm tall light bulb is placed a distance of 45.7 cm from a double convex lens having a focal length of 15.2 cm. Determine the image distance and the image size. 3. A 4.00-cm tall light bulb is placed a distance of 35.5 cm from a diverging lens having a focal length of -12.2 cm. Determine the image distance and the image size. 4. A magnified, inverted image is located a distance of 32.0 cm from a converging lens with a focal length of 12.0 cm. Determine the object distance and tell whether the image is real or virtual. 5. Determine the image distance and image height for a 4.0-cm tall object placed 54.0-cm from a converging lens having a focal length of 18.0 cm. B. Instructions: For each case below draw a ray diagram. Draw the image as arrow and give a description of the image. Case 1: Object is far beyond 2f (at co) + ofCase 2: Object is at 2f Case 3: Object is between 2f and f 2r 2 Case 4: Object is inside f (between f and lens)

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