calculate the missing variables using the necessary formula and rules. newtons 2nd law f=m x a\n1. what does…

calculate the missing variables using the necessary formula and rules. newtons 2nd law f=m x a\n1. what does newtons 2nd law of motion state?\nforce (f)\nf = m x a\nnewtons (n)\na water - filled balloon with an overall mass of 1kg undergoes an acceleration of 2m/s². how much force is being applied to the balloon?\na theme park ride carriage with a mass of 1000kg needs to be accelerated at 0.5 m/s² along a track. what force is required to move the carriage?\na tractor carrying hay bales has a total mass of 9,100 kg. what force is required to reach an acceleration of 4 m/s²?\nmass (m)\nm = f/a\nkilograms (kg)\na skyrocket is launched with a force of 10n and accelerates at 20 m/s². what is the mass of this skyrocket?\na 7.5 n force is applied to a football, generating an initial acceleration of 12 m/s². calculate the mass of the football.\na cannonball accelerates at 1000 m/s² from an applied force of 5000n what is the mass of the cannonball?\nacceleration (a)\na = f/m\nmeters per second (m/s²)\na loaded coal wagon with a total mass of 20,000 kg is pushed by a force of 300,000 n. what is the wagons acceleration?\na spring balance is used to launch a 0.05 kg foam ball with a force of 5n. what acceleration is produced?\na 1000 kg satellite in space needs a course correction. to achieve this, one of its rocket motors is fired to apply 100n of force as thrust. what will the acceleration be due to this thrust?
Answer
Explicación:
Paso 1: Encontrar la fuerza aplicada al globo
Utilizamos la fórmula $F = m\times a$. Dado que $m = 1$ kg y $a=2$ m/s², entonces $F=1\times2$. $F = 2$ N
Paso 2: Encontrar la masa del cohete
Utilizamos la fórmula $m=\frac{F}{a}$. Dado que $F = 10$ N y $a = 20$ m/s², entonces $m=\frac{10}{20}$. $m=0.5$ kg
Paso 3: Encontrar la aceleración del vagón de carbón
Utilizamos la fórmula $a=\frac{F}{m}$. Dado que $F = 300000$ N y $m = 20000$ kg, entonces $a=\frac{300000}{20000}$. $a = 15$ m/s²
Paso 4: Encontrar la fuerza necesaria para el carruaje del parque de diversiones
Utilizamos la fórmula $F=m\times a$. Dado que $m = 1000$ kg y $a=0.5$ m/s², entonces $F = 1000\times0.5$. $F=500$ N
Paso 5: Encontrar la masa del fútbol
Utilizamos la fórmula $m=\frac{F}{a}$. Dado que $F = 7.5$ N y $a = 12$ m/s², entonces $m=\frac{7.5}{12}$. $m = 0.625$ kg
Paso 6: Encontrar la aceleración de la pelota de espuma
Utilizamos la fórmula $a=\frac{F}{m}$. Dado que $F = 5$ N y $m = 0.05$ kg, entonces $a=\frac{5}{0.05}$. $a = 100$ m/s²
Paso 7: Encontrar la fuerza necesaria para el tractor
Utilizamos la fórmula $F=m\times a$. Dado que $m = 9100$ kg y $a = 4$ m/s², entonces $F=9100\times4$. $F = 36400$ N
Paso 8: Encontrar la masa de la bala del cañón
Utilizamos la fórmula $m=\frac{F}{a}$. Dado que $F = 5000$ N y $a = 1000$ m/s², entonces $m=\frac{5000}{1000}$. $m = 5$ kg
Paso 9: Encontrar la aceleración del satélite
Utilizamos la fórmula $a=\frac{F}{m}$. Dado que $F = 100$ N y $m = 1000$ kg, entonces $a=\frac{100}{1000}$. $a=0.1$ m/s²
Respuesta:
- Fuerza aplicada al globo: 2 N
- Masa del cohete: 0.5 kg
- Aceleración del vagón de carbón: 15 m/s²
- Fuerza necesaria para el carruaje del parque de diversiones: 500 N
- Masa del fútbol: 0.625 kg
- Aceleración de la pelota de espuma: 100 m/s²
- Fuerza necesaria para el tractor: 36400 N
- Masa de la bala del cañón: 5 kg
- Aceleración del satélite: 0.1 m/s²