Income for Leisure given Air Trips for Stated Purpose under Leisure Category Solution

STEP 0: Pre-Calculation Summary
Formula Used
Income = ((Air Trips in Year y for stated Purpose/Population of Origin City)-Regression Contant a)/(Regression Contant b*(1/(1+(Constant Reflection Surface Route Saturation*(Mean Total Effective Fair/Mean Income of Households)^Constant q))))
fyl = ((II/Pi)-a)/(b*(1/(1+(K*(F/I)^q))))
This formula uses 9 Variables
Variables Used
Income - Income, station affinity, propensity to invest and trade in year y for leisure.
Air Trips in Year y for stated Purpose - Air Trips in Year y for stated Purpose is defined as the total leisure flights made for the purpose under consideration in a certain number of years.
Population of Origin City - Population of Origin City is the whole number of people or inhabitants in the origin city.
Regression Contant a - Regression Contant a is the constant in a regression equation represents the y-intercept or baseline value, which is the expected value of the dependent variable.
Regression Contant b - Regression Contant b is the constant in a regression equation represents the y-intercept or baseline value, which is the expected value of the dependent variable.
Constant Reflection Surface Route Saturation - Constant Reflection Surface Route Saturation is a value or number that does not change in expression.
Mean Total Effective Fair - Mean Total Effective Fair (fare, supplements, and travel time) is denoted by F.
Mean Income of Households - Mean Income of Households of potential travelers in origin country.
Constant q - Constant q for two category model developed for leisure air trips.
STEP 1: Convert Input(s) to Base Unit
Air Trips in Year y for stated Purpose: 325 --> No Conversion Required
Population of Origin City: 60 --> No Conversion Required
Regression Contant a: 0.6 --> No Conversion Required
Regression Contant b: 0.8 --> No Conversion Required
Constant Reflection Surface Route Saturation: 0.98 --> No Conversion Required
Mean Total Effective Fair: 32 --> No Conversion Required
Mean Income of Households: 68 --> No Conversion Required
Constant q: 10.2 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
fyl = ((II/Pi)-a)/(b*(1/(1+(K*(F/I)^q)))) --> ((325/60)-0.6)/(0.8*(1/(1+(0.98*(32/68)^10.2))))
Evaluating ... ...
fyl = 6.02353618088123
STEP 3: Convert Result to Output's Unit
6.02353618088123 --> No Conversion Required
FINAL ANSWER
6.02353618088123 6.023536 <-- Income
(Calculation completed in 00.004 seconds)

Credits

Created by Mithila Muthamma PA
Coorg Institute of Technology (CIT), Coorg
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National Institute of Technology (NIT), Warangal
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8 Generation-Distribution Models Calculators

Country Pair Relation Index given Air Traffic between Stations i and j
Go Country Pair Relation Index = ((Air Passengers between Cities i and j)/(Regression Coefficient a*(Station Share of GNP*Real Gross National Product)^Regression Coefficient b*(Station Share of GNP*Real Gross National Product)^Currency Scale Constant c*(Economy Fare+Currency Scale Constant a+(Currency Scale Constant b/(Economy Fare-Currency Scale Constant c)))))^(1/Regression Coefficient d)
Income for Leisure given Air Trips for Stated Purpose under Leisure Category
Go Income = ((Air Trips in Year y for stated Purpose/Population of Origin City)-Regression Contant a)/(Regression Contant b*(1/(1+(Constant Reflection Surface Route Saturation*(Mean Total Effective Fair/Mean Income of Households)^Constant q))))
Population at Origin given Air Trips in Year y for Stated Purpose under Leisure Category
Go Population of Origin City = Air Trips in Year y for stated Purpose/(Regression Contant a+(Regression Contant b*Income)*(1/(1+(Constant Reflection Surface Route Saturation*(Mean Total Effective Fair/Mean Income of Households)^Constant q))))
Air Trips in Year y for Stated Purpose under Leisure Category
Go Air Trips in Year y for stated Purpose = Population of Origin City*(Regression Contant a+(Regression Contant b*Income)*(1/(1+(Constant Reflection Surface Route Saturation*(Mean Total Effective Fair/Mean Income of Households)^Constant q))))
Population at i given Air Trips between i and j
Go Population of Origin City = Air Trips between i and j/((Calibrated Constant+(Country Pair Relation Index*Number of Years)+(Factor to Adjust for Quantum Effects))*Population of Destination City)
Air Trips between i and j
Go Air Trips between i and j = (Population of Origin City*Population of Destination City)*(Calibrated Constant+(Country Pair Relation Index*Number of Years)+(Factor to Adjust for Quantum Effects))
Factor to adjust for Quantum Effects given Air Trips between i and j
Go Factor to Adjust for Quantum Effects = (Air Trips between i and j/(Population of Origin City*Population of Destination City))-Calibrated Constant-(Country Pair Relation Index*Number of Years)
Time in Years given Air Trips between i and j
Go Number of Years = ((Air Trips between i and j/(Population of Origin City*Population of Destination City))-Calibrated Constant-Factor to Adjust for Quantum Effects)/Country Pair Relation Index

Income for Leisure given Air Trips for Stated Purpose under Leisure Category Formula

Income = ((Air Trips in Year y for stated Purpose/Population of Origin City)-Regression Contant a)/(Regression Contant b*(1/(1+(Constant Reflection Surface Route Saturation*(Mean Total Effective Fair/Mean Income of Households)^Constant q))))
fyl = ((II/Pi)-a)/(b*(1/(1+(K*(F/I)^q))))

What is Trip Distribution Model?

The Trip Distribution Model predicts the level of trip interchange between designated airport pairs once the level of generation of the air trip ending at the individual airport has been computed. The most widely used distribution model applied to the transport situation has been the gravity model.

What is Revenue Passenger Mile (RPM)?

A Revenue Passenger Mile (RPM) is a transportation industry metric that shows the number of miles traveled by paying passengers and is typically an airline traffic statistic. Revenue passenger miles are calculated by multiplying the number of paying passengers by the distance traveled.

How to Calculate Income for Leisure given Air Trips for Stated Purpose under Leisure Category?

Income for Leisure given Air Trips for Stated Purpose under Leisure Category calculator uses Income = ((Air Trips in Year y for stated Purpose/Population of Origin City)-Regression Contant a)/(Regression Contant b*(1/(1+(Constant Reflection Surface Route Saturation*(Mean Total Effective Fair/Mean Income of Households)^Constant q)))) to calculate the Income, The Income for Leisure given Air Trips for Stated Purpose under Leisure Category is defined as payment received, especially on regular basis, for work or through air travel investments. Income is denoted by fyl symbol.

How to calculate Income for Leisure given Air Trips for Stated Purpose under Leisure Category using this online calculator? To use this online calculator for Income for Leisure given Air Trips for Stated Purpose under Leisure Category, enter Air Trips in Year y for stated Purpose (II), Population of Origin City (Pi), Regression Contant a (a), Regression Contant b (b), Constant Reflection Surface Route Saturation (K), Mean Total Effective Fair (F), Mean Income of Households (I) & Constant q (q) and hit the calculate button. Here is how the Income for Leisure given Air Trips for Stated Purpose under Leisure Category calculation can be explained with given input values -> 6.023536 = ((325/60)-0.6)/(0.8*(1/(1+(0.98*(32/68)^10.2)))).

FAQ

What is Income for Leisure given Air Trips for Stated Purpose under Leisure Category?
The Income for Leisure given Air Trips for Stated Purpose under Leisure Category is defined as payment received, especially on regular basis, for work or through air travel investments and is represented as fyl = ((II/Pi)-a)/(b*(1/(1+(K*(F/I)^q)))) or Income = ((Air Trips in Year y for stated Purpose/Population of Origin City)-Regression Contant a)/(Regression Contant b*(1/(1+(Constant Reflection Surface Route Saturation*(Mean Total Effective Fair/Mean Income of Households)^Constant q)))). Air Trips in Year y for stated Purpose is defined as the total leisure flights made for the purpose under consideration in a certain number of years, Population of Origin City is the whole number of people or inhabitants in the origin city, Regression Contant a is the constant in a regression equation represents the y-intercept or baseline value, which is the expected value of the dependent variable, Regression Contant b is the constant in a regression equation represents the y-intercept or baseline value, which is the expected value of the dependent variable, Constant Reflection Surface Route Saturation is a value or number that does not change in expression, Mean Total Effective Fair (fare, supplements, and travel time) is denoted by F, Mean Income of Households of potential travelers in origin country & Constant q for two category model developed for leisure air trips.
How to calculate Income for Leisure given Air Trips for Stated Purpose under Leisure Category?
The Income for Leisure given Air Trips for Stated Purpose under Leisure Category is defined as payment received, especially on regular basis, for work or through air travel investments is calculated using Income = ((Air Trips in Year y for stated Purpose/Population of Origin City)-Regression Contant a)/(Regression Contant b*(1/(1+(Constant Reflection Surface Route Saturation*(Mean Total Effective Fair/Mean Income of Households)^Constant q)))). To calculate Income for Leisure given Air Trips for Stated Purpose under Leisure Category, you need Air Trips in Year y for stated Purpose (II), Population of Origin City (Pi), Regression Contant a (a), Regression Contant b (b), Constant Reflection Surface Route Saturation (K), Mean Total Effective Fair (F), Mean Income of Households (I) & Constant q (q). With our tool, you need to enter the respective value for Air Trips in Year y for stated Purpose, Population of Origin City, Regression Contant a, Regression Contant b, Constant Reflection Surface Route Saturation, Mean Total Effective Fair, Mean Income of Households & Constant q and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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