The charge of a proton and the charge of all electron has (4) the same magnitude and the opposite sign
Inside the atom consists of a nucleus containing 3 basic particles namely protons and neutrons, while electrons circulate the nucleus on a particular path so that electrons are not attracted to the nucleus.
The charge of these three atomic particles is based on the Rutherford experiment. Rutherford experimented with firing alpha rays on a thin gold plate. From this experiment it was found that:
(at this time these particles are called protons located in the atomic nucleus)
From here comes the Rutherford atomic model which states that atoms consist of positively charged particles (protons) and negatively charged electrons around the nucleus.
The charge of 1 proton is equal to a charge of 1 electron, but the sign is different.
The proton is positively charged (+1), the electron is negatively charged (-1). and neutrons not charged (neutral)
Charge of 1 electron = e = -1.66.10⁻¹⁹ coulomb
Whereas the neutron charge = 0
subatomic particles in an atom
the three particles of an atom
neutrons
the mass, charge, and location of protons, neutrons, and electrons in atoms brainly.com/question/3294412
Keywords: protons, neutrons, electrons, subatomic particles, coulomb
Answer:
Areas at high latitudes have the coldest water.
Explanation:
Surface water receives its heat from the sun.
I took the test and it was right 100% :)
Answer:
Caustic Soda
Limewater
Milk of Magnesia
Bleach
Explanation:
a museum display
an ecosystem
an animal
distances across Earth's surface
Answer:
C I took this test yesterday
Explanation:
In the mitochondrion, small molecules combine with
to produce
and carbon dioxide.
This process releases a large amount of
.
electromagnetic wave, mechanical wave, or both.
Electromagnetic wave travels faster through air than metal.
Option A
Explanation:
There are different kinds of wave energy. The most significant are electromagnetic and mechanical waves. The mechanical waves propagate through the medium by transfer of energy by vibrating of particles in medium.
So, the more number of particles present in the medium, the more fast the mechanical wave can propagate. So the mechanical waves travel faster in metals consisting of more number of free charge carriers. But electromagnetic waves does not need any of the medium to propagate. So it can travel faster in air than in metals.