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Mekhanik [1.2K]
4 years ago
5

Which property of a filled balloon would be unchanged on the moon where there's no air and less gravity?

Physics
1 answer:
grigory [225]4 years ago
3 0
Its mass, I suppose. Unless the balloon explodes.
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How can a mixture of nails and sawdust be most efficiently separated into its component parts?
ch4aika [34]
 sawdust float in water so you could dump the mixture in water so that all of the sawdust float on the surface while the nails sink to the bottom.  
 
7 0
3 years ago
Motion combines the concepts of position change (length) and time. Which of the following combination of units is used to descri
noname [10]

Answer:

Length/time

Explanation:

As in the definition...Velocity is the rate of change of displacement...so hence

Velocity = Displacement/Time...where Displacement is length

Velocity = Length/Time

3 0
4 years ago
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yKpoI14uk [10]

Answer:

Option C. Rate of change of velocity

Explanation:

To know the correct answer to the question, it is important we know the definition of power.

Power can be defined as the rate at which work is done. Mathematically, it is expressed as:

Power = work / time

Work and energy has the same unit of measurement i.e joule. Thus, power can also be defined as the rate at which energy is transferred i.e

Power = enery / time

Energy is measured in Joules and time in second. Thus, power can also be defined as amount of joules transfered per second.

Power = Joule / sec

The rate of change of velocity on the other hand is termed acceleration.

Thus, the answer to the question is option C.

3 0
3 years ago
¿cuales son los motivos para hacer una carta formal?<br>es para hoy porfavor necesito su ayuda ​
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8 0
3 years ago
Read 2 more answers
8. In the billiard ball room at the basement of Memorial Union, two identical balls are traveling toward each other along a stra
mel-nik [20]

Answer:

- Ball 1 will move backward at 7.89 m/s

- Ball 2 will move forward at 4.67 m/s

Explanation:

In an elastic collision, both the total momentum and the total kinetic energy of the system are conserved.

The conservation of the momentum can be written as:

m_1 u_1 + m_2 u_2 = m_1 v_1 + m_2 v_2

where

m_1 is the mass of ball 1

m_2 is the mass of ball 2

u_1 is the initial  velocity of ball 1

u_2 is the initial velocity of ball 2

v_1 is the final velocity of ball 1

v_2 is the final velocity of ball 2

The conservation of kinetic energy can be written as

\frac{1}{2}m_1 u_2^2 + \frac{1}{2}m_2 u_2^2 = \frac{1}{2}m_1 v_1^2 + \frac{1}{2}m_2 v_2^2

Working together the two equations, it is possible to find two expressions for the final velocities in terms of the initial velocities:

v_1=\frac{m_1 -m_2}{m_1 +m_2}u_1+\frac{2m_2}{m_1+m_2}u_2\\v_2=\frac{2m_1}{m_1+m_2}u_1 -\frac{m_1 -m_2}{m_1 +m_2}u_2

In this problem we have:

m_1 = m_2 = m since the mass of the two balls is identical

u_1=+4.67 m/s is the initial velocity of ball 1

u_2=-7.89 m/s is the initial velocity of ball 2

Substituting into the equations, we find the final velocities:

v_1=\frac{2m}{m+m}u_2=u_2 =-7.89 m/s\\v_2=\frac{2m}{m+m}u_1=u_1=+4.67 m/s

Therefore:

- Ball 1 will move backward at 7.89 m/s

- Ball 2 will move forward at 4.67 m/s

7 0
3 years ago
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