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IgorC [24]
3 years ago
15

A 0.68-kg block is hung from and stretches a spring that is attached to the ceiling. A second block is attached to the first one

, and the amount that the spring stretches from its unstrained length quadruples. What is the mass of the second block
Physics
1 answer:
weeeeeb [17]3 years ago
7 0

Answer:2.04 kg

Explanation:

Given

mass of the first block m_1=0.68\ kg

Suppose it brings an extension of x units

When a second mass m_2 is attached, then extension quadruples i.e. 4x

For the first case

m_1g=kx\quad \ldots(i)

For the second case

(m_1+m_2)g=k(4x)\quad \ldots(ii)

divide (i) and (ii)

\dfrac{m_1}{m_1+m_2}=\dfrac{1}{4}\\\dfrac{0.68}{0.68+m_2}=\dfrac{1}{4}\\\\4\times 0.68=0.68+m_2\\m_2=3\times 0.68=2.04\ kg

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Answer:

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Where R is the magnitude, in this case, we know that the magnitude of the displacement is 5m

Then:

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and θ defines the direction, it's an angle measured from the positive x-axis.

(In the image, θ would be the angle located at the point A)

Now, if you look at the image, you can see a triangle rectangle.

Where the adjacent cathetus has a length of 4,

the opposite cathetus has a length of 3 units

the hypotenuse has a length of 5 units.

So we can use any trigonometric rule to find the value of θ, like:

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Then:

sin(θ) = 3m/5m

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This vector would point at 36.87° North of East.

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7 0
2 years ago
Estimate the total number of bacteria and other prokaryotes in the biosphere of the earth. (assume the bacteria are found to a d
Fofino [41]
Since the Earth is almost spherical in shape, we are actually to find first the volume of the spherical segment at a depth of 1,000 m. The radius of the Earth is 6,371,000 meters. The volume of a spherical segment is:

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Substituting the values and making sure the units is in mm,
V = 1/3*π(1000 m * 1000 mm/1 m)²[3(6,371,000 m * 1000 mm/1 m) - (1000 m * 1000 mm/1 m)]
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7 0
3 years ago
What makes up a atom
Licemer1 [7]

Answer:

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Explanation:

hope i helped.

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3 years ago
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Which of the following is an example of a force?
strojnjashka [21]

The answer would be d!

6 0
3 years ago
g determine what frequency is required of a source powering a 100 uf capacitor a 500 ohm resistor and a s50 mH inductor in serie
polet [3.4K]

Answer: 71.16\ Hz

Explanation:

Given

Capacitance C=100\ \mu F

Resistance R=500\ \Omega

Inductance L=50\ mH

In LCR circuit, current is maximum at resonance frequency i.e.

X_L=X_C\ \text{and}\ \omega_o=\dfrac{1}{\sqrt{LC}}

Insert the values

\Rightarrow \omega_o=\dfrac{1}{\sqrt{50\times 10^{-3}\times 100\times 10^{-6}}}\\\\\Rightarrow \omega_o=\dfrac{1}{\sqrt{5}\times 10^{-3}}\\\\\Rightarrow \omega_o=0.447\times 10^{3}

Also, frequency is given by

\Rightarrow 2\pi f=\omega_o\\\\\Rightarrow f=\frac{\omega_o}{2\pi}

\Rightarrow f=\dfrac{1}{2\pi}\times 0.447\times 10^3\\\\\Rightarrow f=71.16\ Hz

8 0
2 years ago
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