Bioconcentration Factor Solution

STEP 0: Pre-Calculation Summary
Formula Used
Bioconcentration Factors = Concentration of Metal in Plant Tissue/Concentration of Metal in Soil
BCF = Cmetalinplanttissue/Cmetal
This formula uses 3 Variables
Variables Used
Bioconcentration Factors - (Measured in Cubic Meter per Kilogram) - Bioconcentration Factors is expressed as the ratio of the concentration of a chemical in an organism to the concentration of the chemical in the surrounding environment.
Concentration of Metal in Plant Tissue - (Measured in Kilogram Per Equivalent) - Concentration of Metal in Plant Tissue is chemical concentration in an organism when the source of chemical is solely water.
Concentration of Metal in Soil - (Measured in Kilogram per Cubic Meter) - Concentration of Metal in Soil is the accumulation of metal like Cd, Cu, Pb and Zn in surface soils.
STEP 1: Convert Input(s) to Base Unit
Concentration of Metal in Plant Tissue: 15 Gram Per Equivalent --> 0.015 Kilogram Per Equivalent (Check conversion here)
Concentration of Metal in Soil: 2.5 Gram per Liter --> 2.5 Kilogram per Cubic Meter (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
BCF = Cmetalinplanttissue/Cmetal --> 0.015/2.5
Evaluating ... ...
BCF = 0.006
STEP 3: Convert Result to Output's Unit
0.006 Cubic Meter per Kilogram -->6 Liter per Kilogram (Check conversion here)
FINAL ANSWER
6 Liter per Kilogram <-- Bioconcentration Factors
(Calculation completed in 00.004 seconds)

Credits

Created by Soupayan banerjee
National University of Judicial Science (NUJS), Kolkata
Soupayan banerjee has created this Calculator and 200+ more calculators!
Verified by Prerana Bakli
University of Hawaiʻi at Mānoa (UH Manoa), Hawaii, USA
Prerana Bakli has verified this Calculator and 1600+ more calculators!

24 Microbiology Calculators

Narrow Heritability using Breeder's equation
Go Narrow Sense Heritability = var(Additive Genetic of (Aa) Allele,Additive Genetic of Allele (AA),Additive Genetic of (aa) Allele)/var(Phenotype of (aa) Allele,Phenotype of (AA) Allele,Phenotype of (Aa) Allele)
Broad Heritability using Breeder's Equation
Go Broad Sense Heritability = var(Genotype of (Aa) Allele,Genotype of (aa) Allele,Genotype of (AA) Allele)/var(Phenotype of (aa) Allele,Phenotype of (AA) Allele,Phenotype of (Aa) Allele)
Protein Release Constant
Go The release constant = ln(The protein content maximum)/(The protein content maximum-The protein release fractional)/The sonication time
Yield of Protein
Go The yield of protein = (The Volume of top phase*The optical density of top phase)/(The Volume of bottom phase*The optical density of bottom phase)
Lineweaver Burk plot
Go The initial reaction rate = (The maximum reaction rate*The substrare concentration)/(Michaelis Constant+The substrare concentration)
Heat Generated during Microbial Growth
Go Metabolic heat evolved = (Substrate yield coefficient)/(Heat of combustion-Substrate yield coefficient*Heat of combustion of cell)
Rotational Angle of Alpha Helix
Go Rotation Angle per Residue = acos((1-(4*cos(((Dihedral angles around negative 65°+Dihedral Angles around negative 45°)/2)^2)))/3)
Temperature Coefficient of Resistance of RTD
Go Temperature Coefficient of Resistance = (Resistance of RTD at 100-Resistance of RTD at 0)/(Resistance of RTD at 0*100)
Hardy-Weinberg Equilibrium Equation for Predicted Frequency of Heterozygous (Aa) Type
Go Predicted Frequency of Heterozygous people = 1-(Predicted Frequency of Homozygous Dominant^2)-(Predicted Frequency of Homozygous Recessive^2)
Hardy Weinberg Equation for Predicted Frequency of Homozygous Dominant (AA) Type
Go Predicted Frequency of Homozygous Dominant = 1-(Predicted Frequency of Heterozygous people)-(Predicted Frequency of Homozygous Recessive)
Net Specific Replication Rate
Go Net specific replication rate = (1/Cell mass concentration)*(Change in mass concentration/Change in time)
Net Specific Growth Rate of Bacteria
Go Net specific growth rate = 1/Cell mass concentration*(Change in mass concentration/Change in time)
Fugacity Capacity of Chemical in Fish
Go Fugacity Capacity of Fish = (Density of Fish*Bioconcentration Factors)/Henry Law Constant
Fitness of Group i in Population
Go Fitness of Group i = Number of Group i Individuals in Next Generation/Number of Group i individuals Previous Generation
Protein release by cell disruption
Go The protein release fractional = The protein content maximum-The protein concentration at specific time
Wall tension of Vessel using Young-Laplace Equation
Go Hoop Stress = (Blood Pressure*Inner Radius of Cylinder)/Wall Thickness
Percentage Protein Recovery
Go The protein recovery = (The final concentration of protein/The intial concentration of protein)*100
Partition coefficeint of protein
Go The partition coefiicient = The optical density of top phase/The optical density of bottom phase
Bioconcentration Factor
Go Bioconcentration Factors = Concentration of Metal in Plant Tissue/Concentration of Metal in Soil
Octanol-Water Partition Coefficient
Go Octanol-Water Partition Coefficient = Concentration of Octanol/Concentration of Water
Net Specific Growth Rate Cell Death
Go Net specific growth rate = Gross specific growth rate-Rate of loss of cell mass
Solute Potential of Cell given Water and Pressure Potential
Go Solute Potential = Water Potential-Pressure Potential
Pressure Potential of Cell given Water and Solute Potential
Go Pressure Potential = Water Potential-Solute Potential
Approximate Water Potential of Cell
Go Water Potential = Solute Potential+Pressure Potential

Bioconcentration Factor Formula

Bioconcentration Factors = Concentration of Metal in Plant Tissue/Concentration of Metal in Soil
BCF = Cmetalinplanttissue/Cmetal

What is Plant Biomass?

Plant biomass is a kind of renewable, eco-friendly, abundant, and clean energy. The utilization of plant biomass can reduce reliance on fossil fuels and improve the problem of environmental pollution. Most agriculture, forestry, and food wastes contain Ligno-cellulosic resources.

How to Calculate Bioconcentration Factor?

Bioconcentration Factor calculator uses Bioconcentration Factors = Concentration of Metal in Plant Tissue/Concentration of Metal in Soil to calculate the Bioconcentration Factors, The Bioconcentration Factor formula is defined as the ratio of the concentration of a chemical in an organism to the concentration of the chemical in the surrounding environment. Bioconcentration Factors is denoted by BCF symbol.

How to calculate Bioconcentration Factor using this online calculator? To use this online calculator for Bioconcentration Factor, enter Concentration of Metal in Plant Tissue (Cmetalinplanttissue) & Concentration of Metal in Soil (Cmetal) and hit the calculate button. Here is how the Bioconcentration Factor calculation can be explained with given input values -> 6000 = 0.015/2.5.

FAQ

What is Bioconcentration Factor?
The Bioconcentration Factor formula is defined as the ratio of the concentration of a chemical in an organism to the concentration of the chemical in the surrounding environment and is represented as BCF = Cmetalinplanttissue/Cmetal or Bioconcentration Factors = Concentration of Metal in Plant Tissue/Concentration of Metal in Soil. Concentration of Metal in Plant Tissue is chemical concentration in an organism when the source of chemical is solely water & Concentration of Metal in Soil is the accumulation of metal like Cd, Cu, Pb and Zn in surface soils.
How to calculate Bioconcentration Factor?
The Bioconcentration Factor formula is defined as the ratio of the concentration of a chemical in an organism to the concentration of the chemical in the surrounding environment is calculated using Bioconcentration Factors = Concentration of Metal in Plant Tissue/Concentration of Metal in Soil. To calculate Bioconcentration Factor, you need Concentration of Metal in Plant Tissue (Cmetalinplanttissue) & Concentration of Metal in Soil (Cmetal). With our tool, you need to enter the respective value for Concentration of Metal in Plant Tissue & Concentration of Metal in Soil and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
Let Others Know
Facebook
Twitter
Reddit
LinkedIn
Email
WhatsApp
Copied!