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Avogadro

Avogadro s number, L The number of particles (atoms or molecules) in one mole of any pure substance. L = 6 023 x 10. It has been determined by many methods including measurements of Brownian movement, electronic charge and the counting of a-particles. [Pg.47]

Boltzmann constanty k A fundamental constant. It is the gas constant per molecule, equal to R divided by Avogadro s number L. [Pg.62]

Brownian movement The rapid and random movement of particles of a colloidal sol, observed brightly lit against a dark ground. First observed with a pollen suspension. The Brownian movement is due to the impact on the dispersed particles of the molecules of the dispersion medium. As the particles increase in size, the probability of unequal bombardment from different sides decreases, and eventually collisions from all sides cancel out and the Brownian movement becomes imperceptible at a particle size of about 3-4/z. From the characteristics of the movement, Perrin calculated Avogadro s number L. [Pg.69]

The properties of hydrocarbon gases are relatively simple since the parameters of pressure, volume and temperature (PVT) can be related by a single equation. The basis for this equation is an adaptation of a combination of the classical laws of Boyle, Charles and Avogadro. [Pg.105]

Benjamin Franklin s experiment is mentioned in the opening paragraphs of this chapter. Estimate, from his results, an approximate value for Avogadro s number make your calculation clear. The answer is a little off explain whether more accurate measurements on Franklin s part would have helped. [Pg.156]

N. is Avogadro s constant. The most commonly used unit then is cm s sometimes inconsistently written — 1... [Pg.761]

Avogadro s number and n = n, then tire above relationship becomes... [Pg.1390]

Tlie molecular volume Vm can in turn be obtained by dividing the molecular weight by density or from refractivity measurements is Avogadro s number. The cavity radius (... [Pg.611]

Having detemiined A b and knowing that the gas constant R = 8.314JK from macroscopic measurements on gases, determine Avogadro s number L from the relationship... [Pg.75]

In terms of moles, Avogadro s hypothesis can be stated The same volume is occupied by one mole of any gas at a given temperature and pressure. The number of molecules in one mole is known as the Avogadro number constant. ... [Pg.528]

The behavior of all gases that obey the laws of Boyle and Charles, and Avogadro s hypothesis, can be expressed by the ideal gas equation ... [Pg.528]


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AVOGADROS NUMBER AND THE MOLE

Ampere Avogadro

Atomism Avogadro

Average atomic mass Avogadro constant

Avogadro constant

Avogadro constant conversion

Avogadro constant determination

Avogadro constant inductance

Avogadro constant length

Avogadro constant magnetization

Avogadro constant magnitude

Avogadro constant molar mass

Avogadro constant number density

Avogadro constant refractive index

Avogadro constant relative molecular mass

Avogadro constant using

Avogadro determination

Avogadro hypothesis

Avogadro law

Avogadro number

Avogadro number constant

Avogadro postulate

Avogadro s number and

Avogadro s theory

Avogadro theory

Avogadro, Amadeo

Avogadro, Amedeo

Avogadro, Amedeo Cannizzaro

Avogadro, Amedeo Carlo

Avogadro, Amedeo Hypothesis

Avogadro, Amedeo Number

Avogadro, Amedeo gases

Avogadro, Amedeo hypothesis, 78 number

Avogadro, Lorenzo

Avogadro, Lorenzo Romano Amadeo

Avogadro, life

Avogadros Law The Amount-Volume Relationship

Avogadros Law Volume and Amount (in Moles)

Avogadros Law Volume and Moles

Avogadros Law and the Standard Molar Volume

Avogadros Number and Molar Mass of an Element

Avogadros Number. The Mole

Avogadro’s constant

Avogadro’s hypothesis

Avogadro’s law

Avogadro’s law At the same temperature

Avogadro’s law Equal volumes of gases

Avogadro’s law Equal volumes of gases at the

Avogadro’s law gas density and

Avogadro’s law kinetic molecular theory

Avogadro’s law molecular view

Avogadro’s number

Avogadro’s number Boltzmann constant and

Avogadro’s number Forster electronic excitation energy transfer

Avogadro’s number as conversion factor

Avogadro’s number chemical reactions

Avogadro’s number dye molecules in zeolite L channels

Avogadro’s number experiments

Avogadro’s number motion

Avogadro’s number of photons

Avogadro’s number radiationless energy transfer, visual

Avogadro’s principle

Conversion factor Avogadro constant

Conversion factor Avogadro’s number

Conversions with Avogadros Number

Daltons Concepts on Elementary Molecules, by Avogadro

Determining Avogadros Number

Gas law Avogadro

Gas laws Avogadro’s law

Gases Avogadro’s hypothesis

Gases Avogadro’s law and

Gay-Lussac and Avogadros Hypothesis

Law of Avogadro

Mass, Avogadros Number, and the Atomic Nucleus

Mole Avogadro’s number and

Moles Avogadro constant

Moles Avogadros Law

Moles Avogadro’s law

Moles Avogadro’s number

More on Daltons Elementary Molecules, by Avogadro

Numbers Avogadro’s number

Oxygen Avogadro’s law and

Principle Avogadro

Relating to Avogadro s number

The Avogadro constant

The Avogadro-Ampere Law

The Combined Gas Law and Avogadros Principle

The Gas Laws of Boyle, Charles, and Avogadro

The Quantity-Volume Relationship Avogadros Law

The Relationship Between Volume and Amount Avogadros Law

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