Respuesta :
Answer : [tex] 3.2 X 10^{15} g/cm^{3} [/tex]
Explanation : To convert amu i.e. atomic mass unit in grams we have the conversion factor as 1 amu = [tex] 1.66054 X 10^{-24} g [/tex]
we know the mass of the proton is 1.0073 amu
So converting it into grams we have to multiply;
1.0073 amu X [tex] 1.66054 X 10^{-24} g/amu [/tex] = [tex] 1.673 X 10^{-24} g [/tex]
Now, Volume = 1/6πd³ as diameter is given as [tex] 1.0 X 10^{-15} m [/tex] converting it to cm will require to multiply with 100
∴ Volume = 1/6π [tex](1.0 X 10^{-15}mX 100 cm / 1 m)^{3} [/tex]
Hence, volume = [tex] 5.236 X 10^{-40} cm^{3} [/tex]
Therefore, Density = mass / volume
∴ Density = [tex] 1.673 X 10^{-24} g / 5.236 X 10^{-40} cm^{3} [/tex]
Therefore, Density will be [tex] 3.2 X 10^{15} g/cm^{3} [/tex].
The density of a proton in g / cm₃ = 3.19.10⁻¹⁵
Further explanation
Atoms are composed of 3 types of basic particles namely protons, electrons, and neutrons
the mass of the basic particle is expressed in units of atomic mass
This atomic unit uses the standard atomic mass, that is, the C-12 isotope
1 atom C-12 = 12 atomic mass units
1 atomic mass unit = 1/12 x mass 1 C-12 atom
1 unit of atomic mass = 1.66.10 ⁻²⁴ g
the basic particle mass in atomic mass units is:
electron mass = 9.11.10⁻²⁸ g
proton mass = 1.6726.10⁻²⁴ g
neutron mass = 1,675.10⁻²⁴ g
The proton mass is considered to be equal to 1 atomic mass unit and is also considered to be equal to 1 atomic mass unit
1 unit of atomic mass = 1.6726.10⁻²⁴ g = 1.6726.10⁻²⁷kg
Density is a quantity derived from the mass and volume
density is the ratio of mass per unit volume
The unit of density can be expressed in g / cm³ or kg / m3³
Density formula:
[tex]\large {\boxed {\bold {\rho ~ = ~ \frac {m} {V}}}}[/tex]
ρ = density
m = mass
v = volume
Assume protons as spheres
with a diameter of 1.0 × 10⁻¹⁵m = 1.0.10⁻¹³ cm
then the volume = 4/3 π r³ or 1/6πd³
proton volume = 1 / 6π(1.0 × 10⁻¹³)³
proton volume = 5.23.10⁻⁴⁰
density becomes:
density = mass: volume
density = 1.6726.10⁻²⁴: 5.23.10⁻⁴⁰
density = 3.19.10⁻¹⁵ g/cm³
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Keywords: density, mass, volume