Physics Archive: Questions from March 11, 2023
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Hola me pueden ayudar con el procedimiento de esta pregunta. Gracias por su ayuda.
5. Se arroja una piedra a una ventana que se encuentra a \( 18,0 \mathrm{~m} \) sobre el suelo. La piedra se lanza con un ángulo de \( 40.0^{\circ} \) sobre la horizontal. La piedra se lanza desde un2 answers -
A. Find the equivalent resistance of the circuit if R1 = 2, R2 = 5, and R3 = 3 B. Build the equivalent circuit and determine the current I. The battery is 1.5 V. Note: remember that there are three
Ejercicios A) Encuentra la resistencia equivalente del circuito si \( R 1=2 \Omega \) \( R 2=5 \Omega \). Y \( R 3=3 \Omega \) 3) Construye el circuito equivalente y determina la corriente I a bateria2 answers -
Find R3, if the equivalent resistance is known to be 1. Find the current in each of the resistors, remember that the voltage across resistors in parallel is the same, in this example it is 1.5 V.
Encontrar \( \mathbf{R} 3 \), si se conoce que la resistencia equivalente es de \( 1 \Omega \) Encontrar la corriente en cada una de las resistencias, recuerde que el voltaje en resistencias en parale2 answers -
Calculate the current through each of the resistors in the circuit shown.
Calcular la corriente a través de cada una de las resistencias en el circuito mostrado.0 answers -
Calculate the currents in each resistor in the circuit.
2. Calcule las corrientes en cada resistencia del circuito2 answers -
Calculate the magnitude and directions of the currents in the resistors of the circuit.
3. Calcule la magnitud y las direcciones de las corrientes en las resistencias del circuito \[ V_{1}=9.0 \mathrm{~V} \quad R_{1}=22 \Omega \]2 answers -
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Calculate the equivalent capacitance of the capacitors C1 = 10uF, C2 = 14uF and C3 = 8uF shown in the figure. \
Calcule la capacitancia equivalente de los capacitores \( \mathrm{C}_{1}=10 \mu \mathrm{F}, \mathrm{C}_{2}=14 \mu \mathrm{F} \) y \( \mathrm{C}_{3}=8 \mu \mathrm{F} \) mostrados en la figura. Escriba2 answers -
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turn on the equipotential lines in the simulation after resolving
In the simulation put two electrical charges \( \mathrm{q}^{1}=+1 \mathrm{C} \) and another \( 92=-1 \mathrm{nC} \) localized \( 0.5 \mathrm{~m} \) under q1. Find the electrical field in a point local2 answers -
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