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Molecular Comparison of Gases, Liquids, and Solids02:26

Molecular Comparison of Gases, Liquids, and Solids

Particles in a solid are tightly packed together (fixed shape) and often arranged in a regular pattern; in a liquid, they are close together with no regular arrangement (no fixed shape); in a gas, they are far apart with no regular arrangement (no fixed shape). Particles in a solid vibrate about fixed positions (cannot flow) and do not generally move in relation to one another; in a liquid, they move past each other (can flow) but remain in essentially constant contact; in a gas, they move...
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The difference between the calculated and experimentally measured masses is known as the mass defect of the atom. In the case of helium-4, the mass defect indicates a “loss” in mass of 4.0331 amu – 4.0026 amu = 0.0305 amu. The loss in mass accompanying the formation of an atom from protons, neutrons, and electrons is due to the conversion of that mass into energy that is evolved as the atom forms. The nuclear binding energy is the energy produced when the atoms’ nucleons are bound together;...
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Most solids and liquids are incompressible—their densities remain constant throughout. In the presence of an external force, the molecules tend to restore to their original positions, which is only possible because the constituents interact. The interactions help the constituents pass on information about external disturbances, like sound waves. Therefore, sound waves travel faster through these media. Compared to solids, the constituents in a liquid are less tightly bound. Thus, sound waves...
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Density is an important characteristic of substances, crucial in determining whether an object sinks or floats in a fluid. Its SI unit is kg/m3, and its cgs unit is g/cm3. The density of an object helps in identifying its composition, and also reveals information about the phase of the matter and its substructure. The densities of liquids and solids are roughly comparable, consistent with the fact that their atoms are in close contact. However, gases have much lower densities than liquids and...
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The volume occupied by one mole of a substance is its molar volume. The ideal gas law, PV = nRT, suggests that the volume of a given quantity of gas and the number of moles in a given volume of gas vary with changes in pressure and temperature. At standard temperature and pressure, or STP (273.15 K and 1 atm), one mole of an ideal gas (regardless of its identity) has a volume of about 22.4 L — this is referred to as the standard molar volume.

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Related Experiment Video

Updated: May 30, 2026

Characterization of Full Set Material Constants and Their Temperature Dependence for Piezoelectric Materials Using Resonant Ultrasound Spectroscopy
07:44

Characterization of Full Set Material Constants and Their Temperature Dependence for Piezoelectric Materials Using Resonant Ultrasound Spectroscopy

Published on: April 27, 2016

Elastic properties of solid helium.

O Syshchenko1, J Day, J Beamish

  • 1Department of Physics, University of Alberta, Edmonton, AB, T6G 2G7, Canada.

Journal of Physics. Condensed Matter : an Institute of Physics Journal
|August 10, 2011
PubMed
Summary

Researchers investigated solid helium

Area of Science:

  • Condensed Matter Physics
  • Quantum Materials

Background:

  • Torsional oscillator experiments suggest supersolid behavior in helium.
  • Further investigation into unusual properties of helium is ongoing.

Purpose of the Study:

  • To develop a new technique for measuring the shear modulus of solid helium.
  • To investigate the relationship between shear modulus anomalies and supersolid phenomena.

Main Methods:

  • Developed a novel low-frequency, small-strain shear modulus measurement technique.
  • Measured shear modulus in hexagonal close-packed (4)He and body-centered cubic (3)He.

Main Results:

  • Observed a dramatic increase in shear modulus in (4)He below 200 mK.
  • Shear modulus anomaly is frequency-independent, strain-dependent, and sensitive to (3)He impurities.

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Last Updated: May 30, 2026

Characterization of Full Set Material Constants and Their Temperature Dependence for Piezoelectric Materials Using Resonant Ultrasound Spectroscopy
07:44

Characterization of Full Set Material Constants and Their Temperature Dependence for Piezoelectric Materials Using Resonant Ultrasound Spectroscopy

Published on: April 27, 2016

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An Externally-Heated Diamond Anvil Cell for Synthesis and Single-Crystal Elasticity Determination of Ice-VII at High Pressure-Temperature Conditions
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An Externally-Heated Diamond Anvil Cell for Synthesis and Single-Crystal Elasticity Determination of Ice-VII at High Pressure-Temperature Conditions

Published on: June 18, 2020

  • Shear modulus behavior mirrors torsional oscillator findings, suggesting a link to mobile dislocations.
  • Conclusions:

    • Shear modulus anomalies in solid helium are likely due to mobile dislocations and impurity pinning.
    • Elastic effects alone do not fully explain observed supersolid phenomena in torsional oscillator experiments.
    • Further studies on (3)He are crucial to understand the relationship between shear modulus and supersolid behavior.