Apuntes Cuantica.docx

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Resultados: A partir de los resultados obtenidos se calcularΓ‘ la energΓ­a cinΓ©tica en cada uno de los casos para posteriormente el llenado de la tabla. πΈπ‘˜ = β„Žπ‘£ βˆ’ 𝛷 Donde: h=constante de Planck=6.626π‘₯10βˆ’34 𝐽/𝑠 v=la frecuencia del color en este caso=𝑓 = π‘β„πœ† 𝐻𝑧 Ξ¦=el voltaje obtenido=mV Entonces calculando esto: πΈπ‘˜ = (6.626π‘₯10βˆ’34 )(48387.0967) βˆ’ (480.6π‘₯10βˆ’3 )=-0.4806 J πΈπ‘˜ = (6.626π‘₯10βˆ’34 )(50632.9113) βˆ’ (410.3π‘₯10βˆ’3 )=-0.4103 J πΈπ‘˜ = (6.626π‘₯10βˆ’34 )(54545.4545) βˆ’ (338.6π‘₯10βˆ’3 )=-0.3386 J πΈπ‘˜ = (6.626π‘₯10βˆ’34 )(56603.7735) βˆ’ (333.8π‘₯10βˆ’3 )=-0.3338 J πΈπ‘˜ = (6.626π‘₯10βˆ’34 )(64516.1290) βˆ’ (434.9π‘₯10βˆ’3 )=-0.4349 J πΈπ‘˜ = (6.626π‘₯10βˆ’34 )(64585.5758) βˆ’ (419.3π‘₯10βˆ’3 )=-0.4193 J

Colores Rojo Naranja Amarillo Verde Azul Violeta

Energia cinetica Longitud de Voltaje de corte Frecuencia onda (m) (mV) (Hz) (J) 48387.09677 6200 480.6 -0.4806 5925 410.3 50632.91139 -0.4103 5500 338.6 54545.45455 -0.3386 5300 333.8 56603.77358 -0.3338 4650 434.9 64516.12903 -0.4349 4645 419.3 64585.57589 -0.4193 Tabla 1.- Resultados Obtenidos en el Laboratorio.

Frecuencia

EnergΓ­a cinΓ©tica

48387.09677

-0.4806

-23254.83871

2341311134

50632.91139

-0.4103

-20774.68354

2563691716

54545.45455

-0.3386

-18469.09091

2975206612

56603.77358

-0.3338

-18894.33962

3203987183

64516.12903

-0.4349

-28058.06452

4162330905

64585.57589

-0.4193

-27080.73197

4171296613

339270.9412

-2.4175

-136531.7493

19417824163

Tabla 2.- Tabla para graficaciΓ³n.

π‘š= 𝑏=

π‘›βˆ‘π‘₯π‘–π‘¦π‘–βˆ’βˆ‘π‘₯𝑖(βˆ‘π‘¦π‘–) π‘›βˆ‘π‘₯𝑖 2 βˆ’(βˆ‘π‘₯𝑖)2

=

6(βˆ’136531.7493)βˆ’(339270.9412)(βˆ’2.4175) 6(19417824163)βˆ’(339270.9412)2

=7.11π‘₯10βˆ’7

βˆ‘π‘₯𝑖 2 (βˆ‘π‘¦π‘–)βˆ’βˆ‘π‘₯𝑖(βˆ‘π‘₯𝑖𝑦𝑖) (19417824163)(βˆ’2.4175)βˆ’(339270.9412)(βˆ’136531.7493) π‘›βˆ‘π‘₯𝑖 2 βˆ’(βˆ‘π‘₯𝑖)2

=

π‘Œ = 7.11π‘₯10βˆ’7 π‘₯βˆ’443.12x10

6(19417824163)βˆ’(339270.9412)2 βˆ’3

=βˆ’443.12x10βˆ’3

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