R1 R2 Two ideal batteries are connected in series with two resistors, as show in the figure above. Assume R1 = 2 Q, R2 = 6 Q, €1 = 16 V and €2 = 5 V. Find: a) the current in the circuit; A b) the power disspated by each resistor. by R1: W by R2: W c) the power delivered by each battery. by €1: W by €2: W
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- As students are conducting an investigation of simple circuits, they notice that when they add additional batteries to their circuit, they can cause a 1.5 Watt light bulb to burn out. They decide to set up an experiment to determine how voltage and power are related. Which of the following procedures would best help them answer their question about voltage and power? O A. d. The students could measure the heat given off by their light bulb before it burns out to determine how much work is being done by the bulb. O B. b. The students could choose light bulbs with different wattage (power) ratings and try each one with a set number of batteries. They could separate the light bulbs that burned out from those that stayed lit and understand how a certain amount of voltage affects bulb life. O C. C. The students could use a voltmeter to measure the voltage going through the bulb at the moment it burns out to confirm that the bulb is getting the full voltage of the battery. They could use…please help with 1 A Thank youYour car's 31.8-W headlight and 2.50-kW starter are ordinarily connected in parallel in a 12.0-V system. What power would one headlight and the starter consume if connected in series to a 12.0-V battery? (Neglect any other resistor in the circuit and any change in resistance in the two devices. Give your answer to at least one decimal place.) W
- In the circuit shown in the figure, the potential difference VA VB = 41.0 V and the resistance R₁ = R₂ = R3 = R4 = Rs = 175 2. The arrow in the figure defines the positive direction for the flow of current IA. Determine IA.. IA = Determine the power Ps dissipated by Ps = R5. A W R₂ + + R3Two batteries and a resistor are connected as shown. 1 = 20 V, 2 = 8.0 V, and R = 2.0 Q. What is the current through the resistor, in Amperes? Your answer needs to have 2 significant figures, including the negative sign in your answer if needed. Do not include the positive sign if the answer is positive. No unit is needed in your answer, it is already given in the question statement. €2 ww2. In Figure 2 the ideal batteries have emfs E = 150 V and E, = 50 V and the resistances are %3D R1 = 3.0 N and R2 = 2.0 N. If the potential at P is 100 V, what is it at Q? R P Figure 2