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qaws [65]
2 years ago
11

The battery capacity of a lithium ion battery in a digital music player is 750 mA-h. The manufacturer claims that the player can

operate for eight hours if the battery is initially fully charged. Given this information, determine the number of electrons that flow through the player as you listen to your favorite songs for three hours.
A. 6.2 times 10^18 electrons
B. 1.0 times 10^3 electrons
C. 2.4 times 10^9 electrons
D. 6.3 times 10^21 electrons
E. 8.1 times 10^28 electrons
Physics
2 answers:
Oksi-84 [34.3K]2 years ago
8 0

Answer:

The number of electrons is 6.3\times10^{21}\ electrons

(D) is correct option.

Explanation:

Given that,

Battery capacity = 750 mA-h

Time t= 8 hours

Time t'=3 hours

We need to calculate the battery capacity

Battery\ capacity=750\times10^{-3}\times3600

Battery\ capacity=2700\ A-s

We need to calculate the number of electrons in 1 C Li

Using formula for number of electron

n=\dfrac{1}{e}

n=\dfrac{1}{1.6\times10^{-19}}

n=6.25\times10^{18}\ electrons

We need to calculate the number of electron in 2700 C

2700\ C=2700\times6.25\times10^{18}=1.68\times10^{22}\ electrons

The total number of electrons battery can deliver in 8 hours

n=1.68\times10^{22}\ electrons

We need to calculate the number of electron in 3 hours

Using formula of number of electrons

n=\dfrac{n\times t'}{t}

Put the value into the formula

n=\dfrac{1.68\times10^{22}\times3}{8}

n=6.3\times10^{21}\ electrons

Hence, The number of electrons is 6.3\times10^{21}\ electrons

Natasha_Volkova [10]2 years ago
7 0

Answer:

option (D)

Explanation:

capacity, q = 750 mA - h = 0.750 x 3600  A-s = 2700 C

time, t = 3 hours = 3 x 3600 seconds = 10800 s

1 C = 6.24 x 10^18 electrons

So, 2700 C = 2700 x 6.24 x 10^18 electrons

                   = 1.684 x 10^22 electrons

but it is used for 3/8 th part

so, number of electrons = 3/8 x 1.684 x 10^22

                                        = 6.315 x 10^21 electrons

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Physicists often measure the momentum of subatomic particles moving near the speed of light in units of MeV/c, where c is the sp
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Answer:

kg m/s

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\dfrac{MeV}{c}=\dfrac{e\times V}{c}\\\Rightarrow \dfrac{MeV}{c}=\dfrac{C\times \dfrac{N}{C}\times m}{m/s}\\\Rightarrow \dfrac{MeV}{c}=Ns\\\Rightarrow \dfrac{MeV}{c}=kg\times \dfrac{m}{s}\times s\\\Rightarrow \dfrac{MeV}{c}=kg\cdot m/s

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5 0
1 year ago
A variable-length air column is placed just below a vibrating wire that is fixed at both ends. The length of the air column, ope
pogonyaev

Answer:

The speed of transverse waves in the wire is 234.26 m/s.

Explanation:

Given that,

Length of wire = 129 cm

Speed of sound in air = 340 m/s

First position of resonance = 31.2 cm

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L=\dfrac{\lambda}{4}

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\lambda=4\times31.2\times10^{-2}

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f=\dfrac{v}{\lambda}

Put the value into the formula

f=\dfrac{340}{1.248}

f=272.4\ Hz

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L=\dfrac{\lambda}{2}

\lambda=L\times 2

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\lambda=43\times2

\lambda=86\ cm

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f=\dfrac{v}{\lambda}

v=f\times\lambda

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v=272.4\times86\times10^{-2}

v=234.26\ m/s

Hence, The speed of transverse waves in the wire is 234.26 m/s.

4 0
2 years ago
Arm abcd is pinned at b and undergoes reciprocating motion such that θ=(0.3 sin 4t) rad, where t is measured in seconds and the
storchak [24]
<span>θ=0.3sin(4t)
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Answer:

an absorber of x-ray

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