DeTree 10ml Grapefruit Menthol Flavor E-liquid 6mg Nic

  • SKU: 349151
  • Weight: 0.039kg (1.38 oz)
  • Date added: 10/16/2014.
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  • Products Description
  • Shipping & Delivery

Product Specifications:

    Brand: DeTree
    Type: E-liquid
    Net: 10ml
    Flavor: Grapefruit Menthol
    Nicotine Content: 6mg
    Nicotine Strength: Low Strength
    PG: 70%
    VG: 30%
    Quantity: 1
    Net Weight:16 g/ 0.56 oz
    Size:68 x 20 x 20 mm/ 2.68 x 0.79 x 0.79 inch

Package Contents:

  • 1 x E-liquid
Available Shipping Method Shipping Cost Tracking NO. Estimated Delivery
Registered Air MailDetermined by shipping areaYES15-30 working days (Exceeding 2KG, items will be shipped in 2 parcels with a little higher freight.)
S-Packet Register MailDetermined by shipping areaYES7-15 working days

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1) Estimated delivery time includes processing time and actual shipping time. Normally our processing will take 1-2 working days.

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4) About tracking number:

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b. Tracking number will be available if you choose registered air mail or EMS.

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by juve3476015 ( Belarus ) 2015-09-20 11:37:43 GMT

Raoult's law gives an approximation to the vapor pressure of mixtures of liquids. It states that the activity (pressure or fugacity) of a single-phase mixture is equal to the mole-fraction-weighted sum of the components' vapor pressures:

p_text{tot} = sum_i p_i chi_i ,
where p tot is the mixture's vapor pressure, i is one of the components of the mixture and Χi is the mole fraction of that component in the liquid mixture. The term piΧi is the partial pressure of component i in the mixture. Raoult's Law is applicable only to non-electrolytes (uncharged species); it is most appropriate for non-polar molecules with only weak intermolecular attractions (such as London forces).

Systems that have vapor pressures higher than indicated by the above formula are said to have positive deviations. Such a deviation suggests weaker intermolecular attraction than i
n the pure components, so that the molecules can be thought of as being "held in" the liquid phase less strongly than in the pure liquid. An example is the azeotrope of approximately 95% ethanol and water. Because the azeotrope's vapor pressure is higher than predicted by Raoult's law, it boils at a temperature below that of either pure component.

There are also systems with negative deviations that have vapor pressures that are lower than expected. Such a deviation is evidence for stronger intermolecular attraction between the constituents of the mixture than exists in the pure components. Thus, the molecules are "held in" the liquid more strongly when a second molecule is present. An example is a mixture of trichloromethane (chloroform) and 2-propanone (acetone), which boils above the boiling point of either pure component.

The negative and positive deviations can be used to determine thermodynamic activity coefficients of the components of mixtures.
... [ Read more ]

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