answersLogoWhite

0


Want this question answered?

Be notified when an answer is posted

Add your answer:

Earn +20 pts
Q: Which prediction about a methane molecule would most likely be made by using both the quantum model of the atom and John Dalton's model?
Write your answer...
Submit
Still have questions?
magnify glass
imp
Related questions

How can a molecule accommodate two electrons in the same hybrid orbital?

By the two of them having opposite spin quantum numbers.


Write the vibrational energy equation which contributes to the internal energy of a molecule?

Molecular vibrations are one of the ways in which a molecule stores chemical energy. For a diatomic molecule, the vibrational can be approximated by the quantum harmonic oscillator. The vibrational energy Ev is Ev = (v + 1/2)hv0 where v is an integer representing vibrational quantum numbers such that v = 0,1,2,3,..., where v=0 for a diatomic molecule at the ground vibrational state; h is Planck's constant; and v0 is the natural frequency of the harmonic oscillator.


What is quantum technology?

Quantum applied science is a young discipline of physics and technology, which transitions, some of the stranger characteristics of quantum mechanics, especially quantum entanglement and most recently quantum tunneling, into virtual applications such as quantum computing, quantum coding, quantum simulation, quantum metrology, quantum sensing, and quantum imaging.


Molecular orbital theory is based upon which model of the atom?

Molecular orbital theory determines molecular structure that the electrons are not assigned as individual bonds between atoms, however, are treated as moving under the influence of the nuclei in the whole molecule.


What is law of quantum energy and quantum mass?

In the universe energy, matter and go as per quantum. Energy is released in quantum of photon. Electron has a quantum mass. Proton has quantum mass. Both has a quantum charge. Neutron has a quantum mass. Speed of light is a quantum. Big bang is a quantum event essentially occurring at particular mass. It takes a quantum energy for shifting of electrons from one shell to other. In photo-luminescence light energy is released in quantum.


Calculate the first two vibrational energy levels a diatomic molecule?

The vibrational energy of a diatomic molecule can be approximated by extension of the quantum harmonic oscillator. The vibrational energy, Ev, is then Ev = (v + 1/2)hv0 where v is an integer representing vibrational quantum numbers such that v = 0,1,2,3,..., where v=0 for a diatomic molecule at the ground vibrational state; h is Planck's constant; and v0 is the fundamental vibrational frequency. For this problem then, you would need the fundamental vibrational frequency of the particular diatomic atom, and then simply calculate Ev for v=1, and v=2.


The quantum medanical model is called the?

The quantum mechanical model is called the quantum theory.


How is a molecule of hydrogen formed from two hydrogen atoms?

A molecule of methane consists of one carbon atom covalently bonded to four hydrogen atoms around it in a symmetrical tetrahedral shape. Its chemical formula is therefore CH4. The angles between each of the bonds are 109o. Methane is a flammable gas, often released by bacteria while decomposing organic waste. It is lot more polluting than carbon dioxide, but a lot less abundant.


What is meant by basic electronics?

Electronic configuration is a term used in atomic physics and quantum chemistry. This is the manner in which electrons of a specific atom or molecule are distributed in an atomic or molecular orbital.


Did Julius oppenhiemer achieve anything big in science?

Oppenheimer's notable achievements in physics include the Born-Oppenheimer approximation for molecular wavefunctions, work on the theory of electrons and positrons, the Oppenheimer-Phillips process in nuclear fusion, and the first prediction of quantum tunneling.


What is quantum theorem?

A quantum theorem does not exist.


What has the author Rudolf Haag written?

Rudolf Haag has written: 'Local quantum physics' -- subject(s): Quantum field theory, Quantum theory 'On quantum field theories' -- subject(s): Quantum theory