It *can* be called "Dynamic Electricity".
Hope that helps a little bit XD.
B. Electrons are transferred from the oxygen atoms to the carbon atoms.
C. Many valence electrons are shared between the atoms.
D. A few valence electrons are shared between the atoms
Answer : The correct option is C.
Explanation :
Covalent bond : Covalent bond forms when two non-metal atom share a pair of electrons.
In the covalent bond formation of carbon dioxide, carbon and oxygen atom share four pair of electrons. The carbon atom joined by four covalent bonds to two oxygen atoms.
The valence electrons in carbon atom = 4
The valence electrons in two oxygen atom = 2(6) = 12
Therefore, these atoms are rearranged to form the bonds by the sharing of many valence electrons between the atoms.
The lewis-dot structure of carbon dioxide is shown below.
Answer:
Person above me got it correct
Explanation:
The answer is C Many valence electrons are shared between the atoms
Just confirming :)
Neutrons and protons make up a nucleus and they are in the middle of an atom. Electrons surround the nucleus. Opposite charges attract each other. Because of this, protons do not attract other protons and electrons do not attract other electrons. Instead, protons attract electrons and electrons attract protons. When someone looks at the elements on the periodic table, they can see how many protons are present by looking at the atomic number. Since atoms have to have an equal amount of each, if an element contains 36 protons, it also has 36 electrons.
gluons
hadrons
nucleons
All particles madeup of two or more quarks held together by a force are called ; ( C ) Hadrons
Hadrons are subatomic particles which are made of two or more quarks which are held firmly by a force similar to electric force. An example of Hadron is Baryon which contains three quarks which are held closely together.
Hence we can conclude that All particles made of quarks are called Hadrons
Learn more about Hadrons : brainly.com/question/3734714
Answer:
All particles made of quarks are called hadrons.