high energy charged particles


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High nuclear charge and small atomic size
High nuclear charge and smaller atomic size leads to the increase in Ionisation energy of the combining elements.Therefore it favours covalent bond formation, because the transfer of electrons in such cases will not be possibl..
Charge
The proton is equal and opposite to the charge of an electron. So the absolute charge of a proton is 1.6 x 10 - 1 9 coulomb of positive charge. This being the smallest positive charge carried by any particle, it is taken as 1 unit positive ..
Properties of Beta particles
They get deflected by electric and magnetic fields. The deflection is large since a beta particle is lighter than an a -particle. They affect photographic plates. They ionise the gas through which they pass. The mass is 9.1 x 10 - 3 1 kg and its charge i..
High ionisation energy
Elements that have higher ionisation energies cannot form ionic bonds, as they cannot lose electrons easily. Instead, they acquire stability by mutual sharing of electrons, and therefore form covalent bond..
Potential Energy of a System of Charges
Potential Energy of a System of Charges - Consider two charges q 1 and q 2 with position vectors r 1 and r 2 respectively, relative to some origin. To calculate externally the work done in building this configuration, we have to consider the charges q 1 and q..
Potential Energy of a System of Charges
Consider two charges q 1 and q 2 with position vectors r 1 and r 2 respectively, relative to some origi..
Nuclear Energy and Chemical Energy
Radioactive materials international warning symbol Nuclear energy is released when very small particles of matter split or combine. After the split or combination, they result in small particles or heavy particle. The rest of the mass is changed into energy. This process of changing mass into ..
Activation energy is high for slow reactions.
Example 11: The rate constants of reaction at 700 K and 760 K are 0.011M - 1 s - 1 and 0.105 M - 1 s - 1 respectively. What are the values of 'A' and 'E..
Mass Energy Relation
Einstein derived a formula given the relation between mass and energy as E = mc 2 . Here 'm' is the mass, 'c' is the velocity of light and 'E' is the energy. This equation has given equal states to mass and energy. It states that a mass m has energy E given b..
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