Local Time Meridian given Greenwich Time Measured Solution

STEP 0: Pre-Calculation Summary
Formula Used
Local Time Meridian = 15*(Greenwich Time Measured-Local Time)
LMT = 15*(GMT-TL)
This formula uses 3 Variables
Variables Used
Local Time Meridian - (Measured in Second) - Local Time Meridian is a reference meridian used for a particular time zone and is similar to the Prime Meridian, which is used for Greenwich Mean Time.
Greenwich Time Measured - (Measured in Second) - Greenwich Time Measured written with respect to local time measured from some initial epoch or time.
Local Time - (Measured in Second) - Local Time measured from some initial epoch or time.
STEP 1: Convert Input(s) to Base Unit
Greenwich Time Measured: 9.53 Hour --> 34308 Second (Check conversion here)
Local Time: 9.5 Hour --> 34200 Second (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
LMT = 15*(GMT-TL) --> 15*(34308-34200)
Evaluating ... ...
LMT = 1620
STEP 3: Convert Result to Output's Unit
1620 Second -->0.45 Hour (Check conversion here)
FINAL ANSWER
0.45 Hour <-- Local Time Meridian
(Calculation completed in 00.004 seconds)

Credits

Created by Mithila Muthamma PA
Coorg Institute of Technology (CIT), Coorg
Mithila Muthamma PA has created this Calculator and 2000+ more calculators!
Verified by M Naveen
National Institute of Technology (NIT), Warangal
M Naveen has verified this Calculator and 900+ more calculators!

13 Tide Producing Forces Calculators

Poisson Probability Law for Number of Storms simulated per year
Go Poisson Probability Law for the number of storms = (e^-(Mean Frequency of Observed Events*Number of Years)*(Mean Frequency of Observed Events*Number of Years)^Number of Storm Events)/(Number of Storm Events!)
Distance from center of Earth to center of Sun given Attractive Force Potentials
Go Distance = ((Mean Radius of the Earth^2*Universal Constant*Mass of the Sun*Harmonic Polynomial Expansion Terms for Sun)/Attractive Force Potentials for Sun)^(1/3)
Separation of distance between centers of mass of two bodies given gravitational forces
Go Distance between Two Masses = sqrt((([g])*Mass of Body A*Mass of Body B)/Gravitational Forces Between Particles)
Phase Lag given Modified Epoch that accounts for longitude and Time Meridian Corrections
Go Phase Lag = Modified form of the Epoch-Local and Greenwich Phase Arguments+(Wave Amplitude*Local Time Meridian/15)
Local Time Meridian given Modified Epoch for longitude and Time Meridian Corrections
Go Local Time Meridian = (Phase Lag-Modified form of the Epoch+Local and Greenwich Phase Arguments)*15/Wave Amplitude
Modified form of epoch accounting for longitude and time meridian corrections
Go Modified form of the Epoch = Phase Lag+Local and Greenwich Phase Arguments-(Wave Amplitude*Local Time Meridian/15)
Gravitational Forces on particles
Go Gravitational Forces Between Particles = [g]*(Mass of Body A*Mass of Body B/Distance between Two Masses^2)
Distance of point located on surface of Earth to center of Moon
Go Distance of point = (Mass of the Moon*Universal Constant)/Attractive Force Potentials for Moon
Distance of point located on surface of earth to center of sun
Go Distance of point = (Universal Constant*Mass of the Sun)/Attractive Force Potentials for Sun
Gravitational constant given radius of Earth and acceleration of gravity
Go Gravitational Constant = ([g]*Mean Radius of the Earth^2)/[Earth-M]
Local Time Meridian given Greenwich Time Measured
Go Local Time Meridian = 15*(Greenwich Time Measured-Local Time)
Local Time given Greenwich Time Measured
Go Local Time = Greenwich Time Measured-(Local Time Meridian/15)
Greenwich Time Measured
Go Greenwich Time Measured = Local Time+(Local Time Meridian/15)

Local Time Meridian given Greenwich Time Measured Formula

Local Time Meridian = 15*(Greenwich Time Measured-Local Time)
LMT = 15*(GMT-TL)

What do you mean by Tidal Force?

The Tidal Force is a gravitational effect that stretches a body along the line towards the center of mass of another body due to a gradient (difference in strength) in gravitational field from the other body; it is responsible for diverse phenomena, including tides, tidal locking, breaking apart of celestial bodies.

How to Calculate Local Time Meridian given Greenwich Time Measured?

Local Time Meridian given Greenwich Time Measured calculator uses Local Time Meridian = 15*(Greenwich Time Measured-Local Time) to calculate the Local Time Meridian, The Local Time Meridian given Greenwich Time Measured is a reference meridian used for a particular time zone and is similar to the Prime Meridian, which is used for Greenwich Mean Time. Local Time Meridian is denoted by LMT symbol.

How to calculate Local Time Meridian given Greenwich Time Measured using this online calculator? To use this online calculator for Local Time Meridian given Greenwich Time Measured, enter Greenwich Time Measured (GMT) & Local Time (TL) and hit the calculate button. Here is how the Local Time Meridian given Greenwich Time Measured calculation can be explained with given input values -> 0.000125 = 15*(34308-34200).

FAQ

What is Local Time Meridian given Greenwich Time Measured?
The Local Time Meridian given Greenwich Time Measured is a reference meridian used for a particular time zone and is similar to the Prime Meridian, which is used for Greenwich Mean Time and is represented as LMT = 15*(GMT-TL) or Local Time Meridian = 15*(Greenwich Time Measured-Local Time). Greenwich Time Measured written with respect to local time measured from some initial epoch or time & Local Time measured from some initial epoch or time.
How to calculate Local Time Meridian given Greenwich Time Measured?
The Local Time Meridian given Greenwich Time Measured is a reference meridian used for a particular time zone and is similar to the Prime Meridian, which is used for Greenwich Mean Time is calculated using Local Time Meridian = 15*(Greenwich Time Measured-Local Time). To calculate Local Time Meridian given Greenwich Time Measured, you need Greenwich Time Measured (GMT) & Local Time (TL). With our tool, you need to enter the respective value for Greenwich Time Measured & Local Time 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 Local Time Meridian?
In this formula, Local Time Meridian uses Greenwich Time Measured & Local Time. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Local Time Meridian = (Phase Lag-Modified form of the Epoch+Local and Greenwich Phase Arguments)*15/Wave Amplitude
Let Others Know
Facebook
Twitter
Reddit
LinkedIn
Email
WhatsApp
Copied!