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Hoochie [10]
3 years ago
9

Can two atoms with the same mass number be isotopes? And with the same atomic number?

Physics
2 answers:
SSSSS [86.1K]3 years ago
8 0

No

Explanation:

Isotopes are Atoms of elements with the same atomic number but different Mass numbers so since those two atoms have the same mass number they are not isotopes

scZoUnD [109]3 years ago
5 0

Answer:

if the 2 atoms have the same mass number and atomic number then they are atoms of the same element. They are not isotopes

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Which is a characteristic of centripetal acceleration?
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Answer:

It is directed inward, toward the center of a circle.

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What happens when a star blows up and it is next another star will it blow up too?
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Sometimes

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Sometimes meaning in occasions. If it is a "vampire star" not likely because they also cause they also make novas happen by sucking the gas from another star.

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The specific heat(c) of copper is 0.39 J/g °C. What is the temperature
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Answer:12.8°c

Explanation:

specific heat capacity of copper(c)=0.39J*g°c

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Quantity of heat(Q)=100joules

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8 0
4 years ago
A car bounces up and down on its springs at 1.0 Hz with only the driver in the car. Now the driver is joined by four friends. Th
romanna [79]

The new frequency of oscillation when the car bounces on its springs is 0.447 Hz

<h3>Frequency of oscillation of spring</h3>

The frequency of oscillation of the spring is given by f = (1/2π)√(k/m) where

  • k = spring constant and
  • m = mass on spring

Now since k is constant, and f ∝ 1/√m.

So, we have f₂/f₁ = √(m₁/m₂) where

  • f₁ = initial frequency of spring = 1.0 Hz,
  • m₁ = mass of driver,
  • f₂ = final frequency of spring and
  • m₂ = mass on spring when driver is joined by 4 friends = 5m₁

So, making f₂ subject of the formula, we have

f₂ = [√(m₁/m₂)]f₁

Substituting the values of the variables into the equation, we have

f₂ = [√(m₁/m₂)]f₁

f₂ = [√(m₁/5m₁)]1.0 Hz

f₂ = [√(1/5)]1.0 Hz

f₂ = 1.0 Hz/√5

f₂ = 1.0 Hz/2.236

f₂ = 0.447 Hz

So, the new frequency of oscillation when the car bounces on its springs is 0.447 Hz

Learn more about frequency of oscillation of spring here:

brainly.com/question/15318845

7 0
2 years ago
Fred points a toy laser gun at a wall. Considering that the frequency of the gun's light is 4.91 × 1014 hertz and that Planck’s
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The answer is 3.24 x 10^-21
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