Delta T given Delta Y Solution

STEP 0: Pre-Calculation Summary
Formula Used
Delta-T = (-1)*C Parameter*Y12 Parameter/Delta-Y
ΔT = (-1)*C*Y12/Δy
This formula uses 4 Variables
Variables Used
Delta-T - Delta-T is defined as the delta impedance of T.
C Parameter - (Measured in Siemens) - C parameter is a generalized line constant. also known as an open circuit conductance.
Y12 Parameter - (Measured in Siemens) - Y12 Parameter is reverse transfer Admittance.
Delta-Y - Delta-Y is defined as the delta impedance of Y.
STEP 1: Convert Input(s) to Base Unit
C Parameter: 16 Mho --> 16 Siemens (Check conversion here)
Y12 Parameter: 1.12 Mho --> 1.12 Siemens (Check conversion here)
Delta-Y: 6 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
ΔT = (-1)*C*Y12/Δy --> (-1)*16*1.12/6
Evaluating ... ...
ΔT = -2.98666666666667
STEP 3: Convert Result to Output's Unit
-2.98666666666667 --> No Conversion Required
FINAL ANSWER
-2.98666666666667 -2.986667 <-- Delta-T
(Calculation completed in 00.004 seconds)

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8 ΔT In Terms Of Different Parameters Calculators

Delta T given Delta G
Go Delta-T = (-1)*D Parameter*G12 Parameter/Delta-G
Delta T given Delta Y
Go Delta-T = (-1)*C Parameter*Y12 Parameter/Delta-Y
Delta T given Delta H
Go Delta-T = A Parameter*H12 Parameter/Delta-H
Delta T given Delta Z
Go Delta-T = B Parameter*Z12 Parameter/Delta-Z
Delta T given A' Parameter
Go Delta-T = D Parameter/A Inverse Parameter
Delta T given B' Parameter
Go Delta-T = B Parameter/B Inverse Parameter
Delta T given C' Parameter
Go Delta-T = C Parameter/C Inverse Parameter
Delta T given D' Parameter
Go Delta-T = A Parameter/D Inverse Parameter

Delta T given Delta Y Formula

Delta-T = (-1)*C Parameter*Y12 Parameter/Delta-Y
ΔT = (-1)*C*Y12/Δy

What is Y parameter in network analysis?

A Y-parameter matrix describes the behavior of any linear electrical network that can be regarded as a black box with a number of ports. A port in this context is a pair of electrical terminals carrying equal and opposite currents into and out of the network, and having a particular voltage between them.

How to Calculate Delta T given Delta Y?

Delta T given Delta Y calculator uses Delta-T = (-1)*C Parameter*Y12 Parameter/Delta-Y to calculate the Delta-T, The Delta t given Delta y formula is defined as the delta impedance of t in the two-port network. it is also known as the transmission parameter. Delta-T is denoted by ΔT symbol.

How to calculate Delta T given Delta Y using this online calculator? To use this online calculator for Delta T given Delta Y, enter C Parameter (C), Y12 Parameter (Y12) & Delta-Y (Δy) and hit the calculate button. Here is how the Delta T given Delta Y calculation can be explained with given input values -> -2.986667 = (-1)*16*1.12/6.

FAQ

What is Delta T given Delta Y?
The Delta t given Delta y formula is defined as the delta impedance of t in the two-port network. it is also known as the transmission parameter and is represented as ΔT = (-1)*C*Y12/Δy or Delta-T = (-1)*C Parameter*Y12 Parameter/Delta-Y. C parameter is a generalized line constant. also known as an open circuit conductance, Y12 Parameter is reverse transfer Admittance & Delta-Y is defined as the delta impedance of Y.
How to calculate Delta T given Delta Y?
The Delta t given Delta y formula is defined as the delta impedance of t in the two-port network. it is also known as the transmission parameter is calculated using Delta-T = (-1)*C Parameter*Y12 Parameter/Delta-Y. To calculate Delta T given Delta Y, you need C Parameter (C), Y12 Parameter (Y12) & Delta-Y (Δy). With our tool, you need to enter the respective value for C Parameter, Y12 Parameter & Delta-Y 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 Delta-T?
In this formula, Delta-T uses C Parameter, Y12 Parameter & Delta-Y. We can use 7 other way(s) to calculate the same, which is/are as follows -
  • Delta-T = A Parameter*H12 Parameter/Delta-H
  • Delta-T = (-1)*D Parameter*G12 Parameter/Delta-G
  • Delta-T = B Parameter*Z12 Parameter/Delta-Z
  • Delta-T = D Parameter/A Inverse Parameter
  • Delta-T = B Parameter/B Inverse Parameter
  • Delta-T = C Parameter/C Inverse Parameter
  • Delta-T = A Parameter/D Inverse Parameter
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