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zmey [24]
3 years ago
11

What two things must occur in order to perform work on an object?

Physics
1 answer:
german3 years ago
4 0
First you need an idea second you need a plan
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A net force of 3 N accelerates a mass of 3 kg at the rate of 1 m/s2. The acceleration of a mass of
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,mkjh ,bkl m,

Explanation:

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4 years ago
How long in seconds will it take a car traveling at 100 miles/hour to travel the length of an American Football field?
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Answer:

It will take 2.45 seconds.

Explanation:

A football field measured 120 yards, that is arround 0.068 miles, the car is moving with a constant speed so the formula we have to apply for this is:

t=\frac{x}{v}\\where\\x=distance\\v=speed\\

t=\frac{0.068}{100}\\t=0.00068hrs

in order to obtain the time in seconds:

tsec=0.00068hr*(\frac{3600sec}{1hr} )\\tsec=2.45 sec

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3 years ago
A blue and a green billiard ball, each with a mass of 0.15 kg, collide directly. Before the collision, the blue ball had a speed
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2 years ago
Consider the low-speed flight of a Space Shuttle as it is nearing a landing. If the air pressure and temperature at the nose of
Nimfa-mama [501]

Answer:

d = 1.24 kg/m³

v = 0.81 m³/kg

Explanation:

To do this, we need to analyze the given data and know the expressions we need to use here to do calculations.

We have a pressure of 1.05 atm and 300 K of temperature. To determine the density, we need to use a similar expression of an ideal gas. In this case, instead of using moles, we will use density:

P = dRT

d = P/RT  (1)

Where:

R: universal constant of gases

d: density.

From here we can determine the specific volume by using the following expression:

v = 1/d   (2)

Now, as we are looking for density, we need to convert the units of pressure in atm to Pascal (or N/m) and the conversion is the following:

P = 1.05 atm * 1.013x10⁵ N/m atm = 106,365 N/m

Now, using R as 287 the density would be:

d = 106,365 / (287 * 300)

<h2>d = 1.24 kg/m³</h2>

Finally the specific volume:

v = 1 / 1.41

<h2>v = 0.81 m³/kg</h2>

Hope this helps

7 0
3 years ago
Which law of motion accounts for the following statement?
m_a_m_a [10]

First, you need forces attracting the Sun and Earth toward each other.  That's described by Newton's law of universal gravitation.

Then you need the description of how that force causes the planet to move in a circular path.  The best choice is Newton's <em>Second law</em> of motion: F = m A .

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3 years ago
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