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rodrigoalcarazdelaosa committed Feb 22, 2024
1 parent 5267904 commit 8e387a6
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| Magnitud | Ecuación vectorial |
| --- | --- |
| Posición | $\vec r(t) = x(t)\ihat + y(t)\jhat = (v_0\cos\alpha_0\cdot t) \ihat + \left(h+v_0\sin\alpha_0\cdot t -\frac{1}{2}gt^2\right)\jhat$ |
| Velocidad | $\vec v(t) = v_x\ihat + v_y(t)\jhat = (v_0\cos\alpha_0)\ihat + (v_0\sin\alpha_0-gt\jhat$ |
| Velocidad | $\vec v(t) = v_x\ihat + v_y(t)\jhat = (v_0\cos\alpha_0)\ihat + (v_0\sin\alpha_0-gt)\jhat$ |
| Aceleración | $\vec a(t) = a_x\ihat + a_y\jhat = 0 -g\jhat = -g\jhat$ |

## Ecuación de la trayectoria
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2 changes: 1 addition & 1 deletion content/es/slides/movimiento-parabolico-1Bach/index.md
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| Magnitud | Ecuación vectorial |
| --- | --- |
| Posición | $\vec r(t) = (v_0\cos\alpha_0\cdot t) \ihat + \left(h+v_0\sin\alpha_0\cdot t -\frac{1}{2}gt^2\right)\jhat$ |
| Velocidad | $\vec v(t) = (v_0\cos\alpha_0)\ihat + (v_0\sin\alpha_0-gt\jhat$ |
| Velocidad | $\vec v(t) = (v_0\cos\alpha_0)\ihat + (v_0\sin\alpha_0-gt)\jhat$ |
| Aceleración | $\vec a(t) = 0 -g\jhat = -g\jhat$ |

{{% /section %}}
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