Some results from the kinetic theory of gases
... We arrived at this result using a model that ignored collisions between molecules. The model is really just a convenience for calculation. It works for two reasons; the time spent during collisions is negligible compared to the time spent between collisions and, in a purely elastic exchange of momen ...
... We arrived at this result using a model that ignored collisions between molecules. The model is really just a convenience for calculation. It works for two reasons; the time spent during collisions is negligible compared to the time spent between collisions and, in a purely elastic exchange of momen ...
Table showing examples of Complex ions with their bond
... electronegativities. Ionisation Potential (Energy) (I) is energy required to remove an electron from the system (atom, molecule, or ion) and transport it to ∞ (infinity- because there has to be no attraction between electron and ion). The more closer the electron (i.e. tightly bound and difficult to ...
... electronegativities. Ionisation Potential (Energy) (I) is energy required to remove an electron from the system (atom, molecule, or ion) and transport it to ∞ (infinity- because there has to be no attraction between electron and ion). The more closer the electron (i.e. tightly bound and difficult to ...
Spin Angular Momentum Magnetic Moments
... radiation required to irradiate NMR transitions. We usually refer to the 1H NMR frequency rather than the magnetic field as 1H is the most commonly studied nucleus. For uncoupled spins, the description of the NMR experiment can be easily described by rotating magnetisations. Individual spins are not ...
... radiation required to irradiate NMR transitions. We usually refer to the 1H NMR frequency rather than the magnetic field as 1H is the most commonly studied nucleus. For uncoupled spins, the description of the NMR experiment can be easily described by rotating magnetisations. Individual spins are not ...
amu (atomic mass unit): a unit used to express very small masses
... concepts and laid the foundation for much of the later progress in understanding atomic structure. But, as is the case with many theories, Bohr's assumptions have had to be modified. Difficulty arose in applying the theory to atoms containing many electrons. Bohr's concept of the atom has been repla ...
... concepts and laid the foundation for much of the later progress in understanding atomic structure. But, as is the case with many theories, Bohr's assumptions have had to be modified. Difficulty arose in applying the theory to atoms containing many electrons. Bohr's concept of the atom has been repla ...
50 Frequently Forgotten Facts
... a) Which statement best describes the reaction H + H H2 + energy: 1) A bond is being broken, which absorbs energy 2) A bond is being formed, which absorbs energy 3) A bond is being broken, which releases energy 4) A bond is being formed, which releases energy 37) Activation energy is the energy gi ...
... a) Which statement best describes the reaction H + H H2 + energy: 1) A bond is being broken, which absorbs energy 2) A bond is being formed, which absorbs energy 3) A bond is being broken, which releases energy 4) A bond is being formed, which releases energy 37) Activation energy is the energy gi ...
Document
... with this example: Through nano-engineering, one can create a step in the potential seen by an electron trapped in a 1D structure, as shown below. You’d like to estimate the wave function for an electron in the 5th energy level of this potential, without solving the SEQ. The actual wavefunction depe ...
... with this example: Through nano-engineering, one can create a step in the potential seen by an electron trapped in a 1D structure, as shown below. You’d like to estimate the wave function for an electron in the 5th energy level of this potential, without solving the SEQ. The actual wavefunction depe ...
n 1
... To overcome this problem, we use the probability of finding the electron in a given volume of space and this is determined from the function Ψ2, where Ψ is the wavefunction. CHEM210/Chapter 1/2014/08 ...
... To overcome this problem, we use the probability of finding the electron in a given volume of space and this is determined from the function Ψ2, where Ψ is the wavefunction. CHEM210/Chapter 1/2014/08 ...
Environment Assisted Quantum Transport in Organic Molecules
... systems. At low temperatures transport is dominated by quantum walk of excitons over the excitable sites forming a network. While a √ classical walker diffuses away from its initial position like ∼ t in time via taking random turns, a quantum walker takes a quantum superposition of amplitudes of alt ...
... systems. At low temperatures transport is dominated by quantum walk of excitons over the excitable sites forming a network. While a √ classical walker diffuses away from its initial position like ∼ t in time via taking random turns, a quantum walker takes a quantum superposition of amplitudes of alt ...
TR-12
... The uncertainty principle puts a lower limit on its kinetic energy that is much larger that any kinetic energy observed for an electron emitted from nuclei. Nuclear spin If a deuteron consists of protons and electrons, the deuteron must contain 2 protons and 1 electron. A nucleus composed of 3 fermi ...
... The uncertainty principle puts a lower limit on its kinetic energy that is much larger that any kinetic energy observed for an electron emitted from nuclei. Nuclear spin If a deuteron consists of protons and electrons, the deuteron must contain 2 protons and 1 electron. A nucleus composed of 3 fermi ...
FREQUENTLY FORGOTTEN FACTS
... a) Which statement best describes the reaction H + H H2 + energy: 1) A bond is being broken, which absorbs energy 2) A bond is being formed, which absorbs energy 3) A bond is being broken, which releases energy 4) A bond is being formed, which releases energy 37) Activation energy is the energy gi ...
... a) Which statement best describes the reaction H + H H2 + energy: 1) A bond is being broken, which absorbs energy 2) A bond is being formed, which absorbs energy 3) A bond is being broken, which releases energy 4) A bond is being formed, which releases energy 37) Activation energy is the energy gi ...
Chapter 7 Many-Electron Atoms
... Not all splittings can be explained by the quantum theory developed in chapter 6. It turns out we need another quantum number -- spin. The Stern-Gerlach experiment is a famous experiment which demonstrated electron spin. I might ask a test or quiz question on it. Sometimes we visualize electron spin ...
... Not all splittings can be explained by the quantum theory developed in chapter 6. It turns out we need another quantum number -- spin. The Stern-Gerlach experiment is a famous experiment which demonstrated electron spin. I might ask a test or quiz question on it. Sometimes we visualize electron spin ...