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An electrostatically charged balloon exerts a force of attraction on a paper in such a way that two positive charges can be identified on the

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An electrostatically charged balloon exerts a force of attraction on a paper in such a way that two positive charges can be identified on the periphery of the balloon and one negative on the periphery of the paper. The balloon and paper charges are placed at the vertices of an equilateral triangle whose sides have a length of 5 cm, as shown in the figure. Charge q1 is known to have negative polarity with a value of 20 uC (microcoulomb), charge q2 has positive polarity with a magnitude of 10 #C, and charge 43 also has positive polarity with an intensity of 30 uC. + globo 2 hoja de pape 92 1. Calculate the force of q3 over,. To do this, we must substitute the values of the respective charges in the equation of Coulomb's law and the value of the distance d, which corresponds to the separation between , and q- 2 Performs the calculation of the force of q2 on ql. to. It uses the Cartesian plane to graph the results of the requested forces. 3. Determines the magnitude of the resulting attractive force exerted by charges q2 and q3 on ql and the angle of the resulting vector. to. It uses the Cartesian plane to graph the result, of the magnitude of the force of attraction. 4. Mention at least 5 situations where you have witnessed applications of electric fields and explain what they are for in your daily life 1 Explains in a paragraph of 5 lines why long hair bristles when brushed1. Place in your home a spotlight that has the power and voltage specification engraved on it. The specification is usually indicated as follows: 40 W / 120 V. Take a photo of this data and include it in your document. Using your focus data, calculate its resistance when connected to the 120 V line 2. One effect of current passage is that some of the energy in the system is transformed into heat and the temperature of the circuit increases, resulting in the Joule effect. Now, imagine that a light bulb has a resistance of 60 (2 (ohm) and consumes a current of 2 A. Calculate the heat that this focus can generate for 1 minute; express the result in calories and kilocalories. Remember to use the following formula: Q =0.241 = Rt Where:0.24 = Joule effect constant (1 Joule = .24 calories) Graph the heat generated by the previous focus for 1 minute and for 10 minutes

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