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zhannawk [14.2K]
3 years ago
14

How would an apple, potato, and onion all taste the same?

Chemistry
2 answers:
Anastasy [175]3 years ago
4 0

Answer:

a

Explanation:

stira [4]3 years ago
3 0

Answer:

a

Explanation:

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An increase in mass will​
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Answer:

As an object increases in speed, so does the amount of energy that it has, this energy is what we refer to as 'the increase in mass'

Explanation:

E

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4 years ago
Not including the noble gases, which area of the periodic table has the highest electronegativities?
Anna71 [15]
The answer is the upper right Fluorine is the most electronegative. 
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4 years ago
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What is the electric force on a proton 2.5 fmfm from the surface of the nucleus? Hint: Treat the spherical nucleus as a point ch
sammy [17]

Explanation:

It is known that charge on xenon nucleus is q_{1} equal to +54e. And, charge on the proton is q_{2} equal to +e. So, radius of the nucleus is as follows.

            r = \frac{6.0}{2}

              = 3.0 fm

Let us assume that nucleus is a point charge. Hence, the distance between proton and nucleus will be as follows.

              d = r + 2.5

                 = (3.0 + 2.5) fm

                 = 5.5 fm

                 = 5.5 \times 10^{-15} m     (as 1 fm = 10^{-15})

Therefore, electrostatic repulsive force on proton is calculated as follows.

              F = \frac{1}{4 \pi \epsilon_{o}} \frac{q_{1}q_{2}}{d^{2}}

Putting the given values into the above formula as follows.

           F = \frac{1}{4 \pi \epsilon_{o}} \frac{q_{1}q_{2}}{d^{2}}

              = (9 \times 10^{9}) \frac{54e \times e}{(5.5 \times 10^{-15})^{2}}

              = (9 \times 10^{9}) \frac{54 \times (1.6 \times 10^{-19})^{2}}{(5.5 \times 10^{-15})^{2}}

              = 411.2 N

or,           = 4.1 \times 10^{2} N

Thus, we ca conclude that 4.1 \times 10^{2} N is the electric force on a proton 2.5 fm from the surface of the nucleus.

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4 years ago
What is the equation for potassium chloride
Lina20 [59]
The equation for this is:
<span>KCl</span>
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What determines what the size of the mineral will be?
Charra [1.4K]

Answer: Density and the elements that it composes.

Explanation: The elements that form the mineral and the size of atoms of these minerals is what ultimately matters in the determination of the size the mineral will be.

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