Question: What variables should I consider when analyzing if Deposits or Money Supply have been growing over time?
How may I really know if the amount of money in an economy (or Money Supply or maybe even an approximation using the Deposits held in all financial institutions in an economy) has been growing over time?
I mean, if I just look at them, they may be growing, yes, but they may be doing so because the economy as a whole (GDP) is growing too! How can I know if they really have been growing over time? Specifically, I want to do an analysis of Money Supply (or Deposits) before and after certain even (in my case, the implementation of a tax whose ultimate purpose was to increase money supply and deposits), and see if that event changed Money Supply (or Deposits) in anything (if the tax was or not effective and changed the behavior of money supply).
What variables should I consider when analyzing if Deposits or Money Supply have been growing over time?
If making some sort of econometric analysis to determine if money supply or deposits had any kind of different behavior before and after that event (the implementation of that tax), what independent variables would you recommend? What things DO affect money supply and should be in my model?
I would appreciate as many good answers as possible. Even if one of them is giving me the name of another more technical oriented forum to post this question.
Thanks in advance!
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design power system distribution transformers dedicated to feed
an industrial area. Part of the load in the area is static (200 KVA rating, 220 V
power factor of 0.87 lagging). Four DC motors are used for lifting in the same
building (11 KW input, VT = 350 V) each. Two inductions motors are designed
to drive a mechanical load (480 V, 400 hp, 0.85 power factor lagging) each.
Three synchronous motors (1000 hp, 13.8 KV, 0.8 power factor lagging) are the
main load of the area. The Saudi Electricity Corporation has the possibility of
supplying the area with a feeder of primary voltage of 115 KV.
The design is expected to include the cost analysis of the industrial area as well
as all transformers technical rating, their KVA sizes as well as their voltage and
current ratings. Any special component used has to be specified. Draw the
circuit diagram show the design steps and results.
design power system distribution transformers dedicated to feed
an industrial area. Part of the load in the area is static (200 KVA rating, 220 V
power factor of 0.87 lagging). Four DC motors are used for lifting in the same
building (11 KW input, VT = 350 V) each. Two inductions motors are designed
to drive a mechanical load (480 V, 400 hp, 0.85 power factor lagging) each.
Three synchronous motors (1000 hp, 13.8 KV, 0.8 power factor lagging) are the
main load of the area. The Saudi Electricity Corporation has the possibility of
supplying the area with a feeder of primary voltage of 115 KV.
The design is expected to include the cost analysis of the industrial area as well
as all transformers technical rating, their KVA sizes as well as their voltage and
current ratings. Any special component used has to be specified. Draw the
circuit diagram show the design steps and results.
design power system distribution transformers dedicated to feed
an industrial area. Part of the load in the area is static (200 KVA rating, 220 V
power factor of 0.87 lagging). Four DC motors are used for lifting in the same
building (11 KW input, VT = 350 V) each. Two inductions motors are designed
to drive a mechanical load (480 V, 400 hp, 0.85 power factor lagging) each.
Three synchronous motors (1000 hp, 13.8 KV, 0.8 power factor lagging) are the
main load of the area. The Saudi Electricity Corporation has the possibility of
supplying the area with a feeder of primary voltage of 115 KV.
The design is expected to include the cost analysis of the industrial area as well
as all transformers technical rating, their KVA sizes as well as their voltage and
current ratings. Any special component used has to be specified. Draw the
circuit diagram show the design steps and results.
design power system distribution transformers dedicated to feed
an industrial area. Part of the load in the area is static (200 KVA rating, 220 V
power factor of 0.87 lagging). Four DC motors are used for lifting in the same
building (11 KW input, VT = 350 V) each. Two inductions motors are designed
to drive a mechanical load (480 V, 400 hp, 0.85 power factor lagging) each.
Three synchronous motors (1000 hp, 13.8 KV, 0.8 power factor lagging) are the
main load of the area. The Saudi Electricity Corporation has the possibility of
supplying the area with a feeder of primary voltage of 115 KV.
The design is expected to include the cost analysis of the industrial area as well
as all transformers technical rating, their KVA sizes as well as their voltage and
current ratings. Any special component used has to be specified. Draw the
circuit diagram show the design steps and results.