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CONSERVACION DE LA ENERGIA
• Trabajo por:
• Johan Cano
• Stiven Yepes
• Daniel Muñoz
• Grado: 10-5
• Institución Educativa Asamblea
Departamental
40 MTS
4KG
V=?
V=?
EP=M*G*H
EP= 4*10*40
EP= 1600
JULIOS
1600=4*V2
2
1600=2*V2
1600/2=V2
800=V2
28 MT
SEG
EC+EP=1600
EP=600
EC= 1000
1000=4*V2
2
500=V2
22 MT
SEG
15
Conservación de la energía
Explicación
• Al inicio, el cubo posee energía potencial, la cual calculamos con la
siguiente formula: masa*gravedad*altura (4*10*40), dando como
resultado 1600 julios.
• Para calcular la velocidad del segundo cubo, hay que tener en
cuenta que la energía no se crea ni se destruye y siempre va hacer
1600 julios. Como el cubo se encuentra abajo totalmente su energía
es cinética, la cual es (masa*gravedad cuadrada/2), igual a 1600,
de esta forma se calcula su velocidad (1600=4*v2
/2), lo que es igual
a 28 mts por segundo cada segundo.
• El tercer cubo cuenta con energía cinética y potencial, calculamos
su energía potencial (masa*gravedad*altura), es igual a 600,
dejándonos como velocidad cinética 1000, porque siempre debe
dar 1600. Ya teniendo la energía cinética calculamos la velocidad:
1000=4*v2
/2= 22 mts por segundo cada segundo

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Presentación1

  • 1. CONSERVACION DE LA ENERGIA • Trabajo por: • Johan Cano • Stiven Yepes • Daniel Muñoz • Grado: 10-5 • Institución Educativa Asamblea Departamental
  • 2. 40 MTS 4KG V=? V=? EP=M*G*H EP= 4*10*40 EP= 1600 JULIOS 1600=4*V2 2 1600=2*V2 1600/2=V2 800=V2 28 MT SEG EC+EP=1600 EP=600 EC= 1000 1000=4*V2 2 500=V2 22 MT SEG 15 Conservación de la energía
  • 3. Explicación • Al inicio, el cubo posee energía potencial, la cual calculamos con la siguiente formula: masa*gravedad*altura (4*10*40), dando como resultado 1600 julios. • Para calcular la velocidad del segundo cubo, hay que tener en cuenta que la energía no se crea ni se destruye y siempre va hacer 1600 julios. Como el cubo se encuentra abajo totalmente su energía es cinética, la cual es (masa*gravedad cuadrada/2), igual a 1600, de esta forma se calcula su velocidad (1600=4*v2 /2), lo que es igual a 28 mts por segundo cada segundo. • El tercer cubo cuenta con energía cinética y potencial, calculamos su energía potencial (masa*gravedad*altura), es igual a 600, dejándonos como velocidad cinética 1000, porque siempre debe dar 1600. Ya teniendo la energía cinética calculamos la velocidad: 1000=4*v2 /2= 22 mts por segundo cada segundo