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Reference link: https://drive.google.com/file/d/1Jiv9l_vNEqzpEl44l5hhaI7M9rmjfohy/view?usp=sharing please answer. with solutions and explanations please. I will read it. and please write nicely so that i can read it properly.

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Reference link: https://drive.google.com/file/d/1Jiv9l_vNEqzpEl44l5hhaI7M9rmjfohy/view?usp=sharing

please answer. with solutions and explanations please. I will read it. and please write nicely so that i can read it properly. thank you so much i will give a high rate. ANSWER ALL ITEMS. refer for the link for the module.

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What's More NOW IT'S YOUR TURN! 14 Exercise 1.2 Comprehension Check! Instructions: Write TRUE if the statement is correct and if it is False, change the underlined word to make the statement correct. Write your answers on a separate sheet of paper. 1. The inverse of the equivalent capacitance is the algebraic sum of the inverses of the individual capacitances and the equivalent capacitance of a series combination is always less than any individual capacitance in the combination. 2. The capacitance C of a capacitor is defined as the proportion of the magnitude of the charge on either conductor to the magnitude of the potential difference between the conductors. 3. The total potential difference across any number of capacitors connected in series is the sum of the potential differences across the individual capacitors. _4. The equivalent capacitance of a parallel combination of capacitors is the algebraic sum of the individual capacitances and is less than any of the individual capacitances. 5. The total charge on capacitors connected in series is the sum of the charges on the individual capacitors.Exercise 1.3 Think Critically! Inscuccbns: Solve the following problems below and write your answers on a separate sheet of paper. Show Your solution. 1. Five capacitors, C1= 2 11F, Cg = 4 11F, Ca= E 1.11:\What's More NOW IT'S YOUR TURN! Exercise 2.2. Think before you write! Instructions: Answer the following questions correctly. Write your answers on a separate sheet of paper. 1. A capacitor is fully charged by a battery and then disconnected. An insulator is then inserted into the capacitor. Explain how each of the following would change. a. capacitance b. voltage c. E-field d. charge on the surface of the insulator e. charge on the plates 2. Why is it dangerous to touch the terminals of a high voltage capacitor even after the applied potential difference has been turned off? What can be done to make the capacitor safe to handle after the voltage source has been removed

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