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Degree of saturation when dry unit weight in terms of water content is given Solution

STEP 0: Pre-Calculation Summary
Formula Used
degree_of_saturation = water content/((Specific gravity of the soil*Unit weight of water/Dry unit weight of soil)-1)
S = w/((Gs*γw/γd)-1)
This formula uses 4 Variables
Variables Used
water content- Water content is the ratio of the weight of water to the weight of solids present in the soil.
Specific gravity of the soil- Specific gravity of the soil is an important property of soil being related to density.
Unit weight of water - Unit weight of water is the weight of watet per unit volume of a water. (Measured in Kilonewton per Cubic Meter)
Dry unit weight of soil - The dry unit weight of soil is the weight of soil solids per unit of total volume of soil mass. (Measured in Kilonewton per Cubic Meter)
STEP 1: Convert Input(s) to Base Unit
water content: 1 --> No Conversion Required
Specific gravity of the soil: 2.65 --> No Conversion Required
Unit weight of water: 9.807 Kilonewton per Cubic Meter --> 0.009807 Newton per Cubic Meter (Check conversion here)
Dry unit weight of soil: 100 Kilonewton per Cubic Meter --> 0.1 Newton per Cubic Meter (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
S = w/((Gs*γw/γd)-1) --> 1/((2.65*0.009807/0.1)-1)
Evaluating ... ...
S = -1.35114228947008
STEP 3: Convert Result to Output's Unit
-1.35114228947008 --> No Conversion Required
FINAL ANSWER
-1.35114228947008 <-- degree of saturation
(Calculation completed in 00.005 seconds)

10+ Relationships of Weights and Volumes in Soils Calculators

Saturated Unit Weight of Soil with Saturation 100 Percent
saturated_unit_weight = (((Specific gravity of the soil*Unit weight of water)+(Void ratio*Unit weight of water))/(1+Void ratio)) Go
Saturated Unit Weight of Soil when Water Content is Given
saturated_unit_weight = (((1+Water content)*Specific gravity of the soil*Unit weight of water)/(1+Void ratio)) Go
Unit Weight of Water when Saturated Unit Weight is Given
unit_weight_of_water = (Saturated unit weight*(1+Void ratio)/((1+Water content)*Specific gravity of the soil)) Go
Unit Weight of Water when Saturated Unit Weight and Void Ratio is Given
unit_weight_of_water = (Saturated unit weight*(1+Void ratio)/(Specific gravity of the soil+Void ratio)) Go
Dry Unit Weight of Soil when Saturation is 0 Percent
dry_unit_weight_of_soil = ((Specific gravity of the soil*Unit weight of water)/(1+Void ratio)) Go
Unit Weight of Water when Buoyant Unit Weight is Given
unit_weight_of_water = (Buoyant unit weight*(1+Void ratio)/(Specific gravity of the soil-1)) Go
Unit Weight of Water when Dry Unit Weight is Given
unit_weight_of_water = (Dry unit weight of soil*(1+Void ratio)/Specific gravity of the soil) Go
Total weight of sample with respect to water content
total_weight = (water content*weight of solids/100)+weight of solids Go
Total mass of soil when water content of soil with respect to its mass is given
total_mass = (water content*Mass of solids/100)+Mass of solids Go
Dry mass of soil when water content of soil with respect to its mass is given
mass_of_solids = (Total mass of sand*100)/(water content+100) Go

Degree of saturation when dry unit weight in terms of water content is given Formula

degree_of_saturation = water content/((Specific gravity of the soil*Unit weight of water/Dry unit weight of soil)-1)
S = w/((Gs*γw/γd)-1)

What is water content?

Water content or moisture content is the quantity of water contained in a material, such as soil, rock, ceramics, crops, or wood. Water content is used in a wide range of scientific and technical areas, and is expressed as a ratio, which can range from 0 to the value of the materials' porosity at saturation.

How to Calculate Degree of saturation when dry unit weight in terms of water content is given?

Degree of saturation when dry unit weight in terms of water content is given calculator uses degree_of_saturation = water content/((Specific gravity of the soil*Unit weight of water/Dry unit weight of soil)-1) to calculate the degree of saturation, The Degree of saturation when dry unit weight in terms of water content is given is the degree or extent to which something is dissolved or absorbed compared with the maximum possible, usually expressed as a percentage. degree of saturation and is denoted by S symbol.

How to calculate Degree of saturation when dry unit weight in terms of water content is given using this online calculator? To use this online calculator for Degree of saturation when dry unit weight in terms of water content is given, enter water content (w), Specific gravity of the soil (Gs), Unit weight of water w) and Dry unit weight of soil d) and hit the calculate button. Here is how the Degree of saturation when dry unit weight in terms of water content is given calculation can be explained with given input values -> -1.351142 = 1/((2.65*0.009807/0.1)-1).

FAQ

What is Degree of saturation when dry unit weight in terms of water content is given?
The Degree of saturation when dry unit weight in terms of water content is given is the degree or extent to which something is dissolved or absorbed compared with the maximum possible, usually expressed as a percentage and is represented as S = w/((Gs*γw/γd)-1) or degree_of_saturation = water content/((Specific gravity of the soil*Unit weight of water/Dry unit weight of soil)-1). Water content is the ratio of the weight of water to the weight of solids present in the soil, Specific gravity of the soil is an important property of soil being related to density, Unit weight of water is the weight of watet per unit volume of a water and The dry unit weight of soil is the weight of soil solids per unit of total volume of soil mass.
How to calculate Degree of saturation when dry unit weight in terms of water content is given?
The Degree of saturation when dry unit weight in terms of water content is given is the degree or extent to which something is dissolved or absorbed compared with the maximum possible, usually expressed as a percentage is calculated using degree_of_saturation = water content/((Specific gravity of the soil*Unit weight of water/Dry unit weight of soil)-1). To calculate Degree of saturation when dry unit weight in terms of water content is given, you need water content (w), Specific gravity of the soil (Gs), Unit weight of water w) and Dry unit weight of soil d). With our tool, you need to enter the respective value for water content, Specific gravity of the soil, Unit weight of water and Dry unit weight of soil and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate degree of saturation?
In this formula, degree of saturation uses water content, Specific gravity of the soil, Unit weight of water and Dry unit weight of soil. We can use 10 other way(s) to calculate the same, which is/are as follows -
  • unit_weight_of_water = (Saturated unit weight*(1+Void ratio)/((1+Water content)*Specific gravity of the soil))
  • unit_weight_of_water = (Saturated unit weight*(1+Void ratio)/(Specific gravity of the soil+Void ratio))
  • unit_weight_of_water = (Dry unit weight of soil*(1+Void ratio)/Specific gravity of the soil)
  • unit_weight_of_water = (Buoyant unit weight*(1+Void ratio)/(Specific gravity of the soil-1))
  • saturated_unit_weight = (((Specific gravity of the soil*Unit weight of water)+(Void ratio*Unit weight of water))/(1+Void ratio))
  • saturated_unit_weight = (((1+Water content)*Specific gravity of the soil*Unit weight of water)/(1+Void ratio))
  • dry_unit_weight_of_soil = ((Specific gravity of the soil*Unit weight of water)/(1+Void ratio))
  • total_weight = (water content*weight of solids/100)+weight of solids
  • total_mass = (water content*Mass of solids/100)+Mass of solids
  • mass_of_solids = (Total mass of sand*100)/(water content+100)
Where is the Degree of saturation when dry unit weight in terms of water content is given calculator used?
Among many, Degree of saturation when dry unit weight in terms of water content is given calculator is widely used in real life applications like {FormulaUses}. Here are few more real life examples -
{FormulaExamplesList}
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