What is the acceleration of a truck with a mass of 2,000 kg when its brakes apply a force of 10,000 N?

Answers

Answer 1
Answer:

Answer:

5m/s2

Explanation:

Data obtained from the question include:

m (mass) = 2000 kg

F (force) = 10000N

a (acceleration) =?

Using the formula F = ma, the acceleration of the truck can be obtained as follow:

F = ma

a = F/m

a = 10000/2000

a = 5m/s2

The acceleration of the truck is 5m/s2

Answer 2
Answer:

Final answer:

The acceleration of the truck when the brakes apply a force of 10,000 N is calculated using Newton's second law of motion (a = F/m) as 5 m/s².

Explanation:

The acceleration of a truck can be calculated using Newton's second law of motion which states that the acceleration of an object is the net force acting on it divided by its mass. This can be written as a = F/m, where a is acceleration, F is force, and m is mass. In this case, the force is the force applied by the brakes, which is 10,000 N and the mass of the truck is 2,000 kg. Applying the formula, a = 10000 N / 2000 kg = 5 m/s². Therefore, the acceleration of the truck when its brakes apply a force of 10,000 N is 5 m/s².

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Answers

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A 60-gram sample of radioactive isotope is measured after two half-lives have passed. What pair of percentages describe the sample after two-half lives? A.) 50% unchanged and 50% stable B.) 25% unchanged and 75% stable C.) 12.5% unchanged and 87.5% stable D.) 75% unchanged and 25% stable

Answers

Answer: B.) 25% unchanged and 75% stable

Explanation:

Now, to calculate the initial amount of radioactive isotope

a=(a_o)/(2^n)

where,

a = amount of reactant left after n-half lives = 60 g

a_o = Initial amount of the reactant = ?

n = number of half lives= 2

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Answer:

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Explanation:

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