Wednesday, June 12, 2013

I still don't trust the son of a bitch


But he does seem to be coming around to my way of thinking.

Bruce Bartlett:

Economists are still searching for answers to the slow growth of the United States economy. Some are now focusing on the issue of “financialization,” the growth of the financial sector as a share of gross domestic product. Financialization is also an important factor in the growth of income inequality, which is also a culprit in slow growth.

Yeah, this Bruce Bartlett.

To be clear, Bartlett is not adopting the idea of financialization-as-a-cause-of-economic-malaise. His article only reports on others showing an interest.

Better than nothing.

"Other Checkable Deposits"


Well this surprised me:

Graph #1

I found the "Currency Component of M1 Plus Demand Deposits" quite by accident. The blue line. The red line is M1. What's the difference?

M1 is made up of four things:
  • Notes and Coins in Circulation
  • Demand Deposits
  • Traveler's Checks
  • Other Checkable Deposits
The red line includes all four. The blue line includes only the first two. The gap between the red and blue lines is due to Traveler's Checks and Other Checkable Deposits. I looked at Traveler's Checks -- TVCKSSL -- some time back. Small potatoes.

If I add Traveler's Checks to the blue line, the gap between red and blue will be entirely due to "Other Checkable Deposits". Here you go:

Graph #2
Not much different, is it?

But I want to see the growth and change of Other Checkable Deposits as a portion of M1.

Graph #3

Tuesday, June 11, 2013

Not just a difference of opinion


You have to start with definitions.

Monday, June 10, 2013

Reading the electronic blips




After finishing yesterday's post, I looked again at the Base Money graph, wondering how reserves fit to it. FRED showed me this:

Graph #1: Base Money and Total Reserves
Base Money in red, Total Reserves in blue.

Just to refresh my memory, here's a piece of Wikipedia's Money Supply table:

Type of money M0 MB
Notes and coins in circulation (outside Federal Reserve Banks and the vaults of depository institutions) (currency)
Notes and coins in bank vaults (Vault Cash)
Federal Reserve Bank credit (required reserves and excess reserves not physically present in banks)
Traveler's checks of non-bank issuers

Demand deposits

Other checkable deposits (OCDs), which consist primarily of Negotiable Order of Withdrawal (NOW) accounts at depository institutions and credit union share draft accounts.

Savings deposits

Time deposits less than $100,000 and money-market deposit accounts for individuals

Large time deposits, institutional money market funds, short-term repurchase and other larger liquid assets

All money market funds


As the MB column indicates, base money is made up of three parts: Notes and coins in circulation, Vault Cash, and Reserves not physically present in banks.

If you walk into the bank with a dollar in your pocket, that dollar counts as "Notes and coins in circulation". If you deposit the dollar, it changes to "Vault Cash". It is still part of base money, but now it counts as Reserves, as this investorwords clip shows:


If that dollar then for some reason gets sent to the Fed it is still base money and it is still reserves, but now it is "not physically present in banks".

That's the relation between the three components of base money.

If that is correct, then we can manipulate the components a bit, and look at it this way:

  • The two components of base money are the "coins and currency" that people have, and "reserves"...
  • And the two components of reserves are the coins and currency that banks have, and the coins and currency that the Federal Reserve has.

Whoa, Nelly! Maybe you object to the notion that reserves are coins and currency that the Federal Reserve has. Reserves are imagined to be electronic blips or something. But even if true, that is a technical detail completely without relevance. How the Fed stores reserves internally is utterly irrelevant.

So when Steve Roth writes

I’m going to go even farther than Dow and say: the Fed is not printing money. (It can do that, but the result is stuff you can hold in your hand.) That’s a confusing and actually incoherent misconception. The Fed is issuing new reserves and exchanging them for bonds.

I have to disagree. If the Fed is "issuing new reserves" then the Fed is "printing money". The phrase "printing money" is used to mean "increasing the quantity of money". Roth's "stuff you can hold in your hand" objection is ridiculous. Roth's misinterpretation of the common phrase is ridiculous.

The Fed doesn't have to "print" money to print money. It only has to issue the stuff. It can buy something and add electronic-blip funds to the seller's account. Whatever. It is still increasing the quantity of money. It is still "printing money".

Roth writes:

Reserves only exist (can only exist) in banks’ accounts at the Federal Reserve Banks (and only members — banks plus GSEs and other large institutions like the IMF — can have accounts there). The banking system can’t remove reserves from the system by transferring them to the nonbank sector in exchange for [stuff]

But it is not true that "Reserves only exist in accounts at the Federal Reserve." Roth is wrong about that. For as we have seen, vault cash is counted as part of reserves. Vault cash is cash in the banks or in their ATMs. It is not in accounts at the Federal Reserve.

And it is not true that "The banking system can’t remove reserves from the system by transferring them to the nonbank sector". Roth is probably right that banks don't use their reserve funds to buy drill presses and stuff. But banks "remove reserves from the system" all the time. It happens all the time.

Every week the wife deposits my paycheck in the bank and withdraws some cash to get me through the week. That cash is base money. Monday morning at the coffee shop it is "notes and coins in circulation". Before withdrawal it was "vault cash".

Before withdrawal, it was reserves.

If you have ever withdrawn money from a bank as cash, you have forced a bank to remove reserves from the system and transfer them to the nonbank sector. Once the "nonbank sector" has that money, it is no longer considered reserves. Therefore, the total amount of reserves has been reduced.

Reserves are reduced by the simple act of making a cash withdrawal.


What Steve Roth fails to understand is that base money is always money, whatever form it takes -- pocket money, vault cash, or electronic blips at the Federal Reserve.

In days of old when cash was gold,
fiat not yet invented,
gold was the base in every place.
Confusion was prevented.



So anyhow. Base Money is sometimes called the Monetary Base. The Wikipedia table uses the letters MB to represent base money, I suppose because the sequence BM is already taken.

Base money (MB) = Circulating Cash (CC) + Vault Cash (VC) + Reserves at the Fed (RF):


But "Vault Cash" and "Reserves at the Fed" together count as Reserves (R):


Now I can do the simple manipulation I started out to do. Subtract R from both sides:


Graph #1 showed MB and R. Graph #2 shows MB - R (Base Money less Reserves):

Graph #2: Base Money less Reserves
The line shown in Graph #2 should be equal to Circulating Cash (CC) or "Notes and coins in circulation". I went to FRED, searched the word "circulation", and limited the search to US data. Turned up 9 data series. The one with the most relevant-sounding name was Currency in Circulation. Graph #3 shows Currency in Circulation (red) along with the line from Graph #2:

Graph #3: Base Money less Reserves (blue) and Currency in Circulation (red)
You can click on the graph for a better view at the FRED source page.
Pretty good match.

Sunday, June 9, 2013

In Search of Better Questions


Somebody posted this graph at Reddit, along with a question:

Graph of US monetary base. Notice anything unusual?

Graph #1: The Monetary Base

In response to the graph, a number of your typical lowbrow comments:

Get ready for the coming category 5 inflationary storm
and
Get prepared and wait the storm out over at /r/Silverbugs
and
Brace yourself, inflation is comming.

Only one "m" in "coming", please. Anyway, here's a better question:

What was going on before that sudden final spike?


Questions like this might lead to better answers. We can look at the Graph #1 data a different way to get a hint of the better answers. Graph #2 shows "% Chg. from Yr. Ago" for the numbers from Graph #1:

Graph #2: Percent Change from Year Ago of the Monetary Base

Ah, this is much more interesting than the first graph. You can still see the big spike on the right, just before 2010. But there's lots of other stuff happening, too.

There are those three good-size spikes in the 1930s and '40s. That was a response to the Great Depression. That was Ben Bernanke's model for the big spike of 2008.

Notice that Bernanke's spike is much taller, and brief. Bernanke understood that it took a lot of increase in the monetary base to recover from the Great Depression, so he tried to do it all at once and get it over with. That's how it looks to me. If it didn't work, it's because there are other things involved than just the monetary base. And, granted, we still have problems. But I would say that the vertical gray bar that ends at 2010 is much narrower than the vertical gray bar that starts at 1930, because of the massive and rapid spike in base money. If nothing else, it drew people's attention away from economic collapse and focused that attention on inflation -- as you can see from the Redditors' remarks.

I don't mean to make excuses for Bernanke. His plan seems to be to keep trying "quantitative easing" until it fails spectacularly.

By the way, in mine of 4 June I related the Depression-era increase of the monetary base to inflation. I made reference to "three massive spikes" of inflation in that era. You can see those three spikes, in red, on the graph below. Each spike occurs approximately eight years after the corresponding spike in the monetary base:

Graph #3: The Rate of Money Growth (blue) and the Rate of Inflation (red) 1925-1970

Eight years is a long time, certainly longer than I would have thought. But the economy was unresponsive in that era, and this could account for the eight-year delay.

There is a fourth blue spike on the graph, just a hump really, between 1950 and 1955. Perhaps it is related to the Korean War? Anyway, about five years later there is a red hump of roughly equal size. This time there is only about a five-year delay between the monetary inflation and the price inflation.

Why five years instead of eight? Perhaps because the economy was more responsive... because the economy was growing again.

Finally, beginning around 1960 there is another increase in the blue, the monetary base. And sure enough five years later there is an increase, a comparable increase in the red, in the rate of inflation.

I never looked at this before. The relation is remarkable. I suppose I should point out that the relation seems to break down by 1970. The red inflation spikes of 1975 and 1980 on the next graph are higher than the growth of money, and less regular. And then after 1980 it's different again, and inflation runs significantly lower than money growth:

Graph #4: The Rate of Money Growth (blue) and the Rate of Inflation (red) 1950-1995

The reason the inflation spikes are higher in the 1970s? Others say "expectations". I say it was cost-push forces arising from the growth of finance. And the reason inflation ran low after the early 1980s? Changes in policy.

Unfortunately, those changes in policy caused growth to moderate, dropped interest rates to unnatural lows, and drove us to the Great Recession like lemmings to the sea.

What was going on before that sudden final spike?


There was a lot going on before 2008, before the base money spiked up. Look at the decade just before that massive spike. The years from 2000 to 2008 show a regular and persistent downtrend in the rate of money growth. When it reached zero, we got the Great Recession. Here, look again at Graph #2 -- between 2000 and 2010:

Graph #2: Percent Change from Year Ago of the Monetary Base
Now look at the decade just before the first of the three Depression-era spikes. The years from 1920 to 1929 show a regular and persistent downtrend in the rate of money growth. The slope is even the same as in the downtrend of 2000-2008. And when the money growth reached zero, we got the Great Depression.

Now that's a pretty remarkable lower bound.

What else was going on, that we can see on Graph #2? Look at the rate of money growth before the increase of the 1960s. After the three Depression-era spikes, and before 1960. The rate of money growth in those years was very close to zero. The period even includes the fourth spike, the hump between 1950 and 1955 that we looked at above. That hump is only about half as high as money growth in the 1970s and '80s and '90s. Half as high, and of brief duration. Short, and close to zero.

So with all of this "close to zero" money growth going on in the 1950s, how come we didn't have another Great Depression or another Great Recession, then? I mean, in the 1920s and again in 2008 money growth only had to touch zero to bring the economy down. Why not also in the 1950s?

For one thing there was still plenty of money in the economy, left over from the three Depression-era spikes. When people already have plenty of money, you don't have to keep printing more money just so people can get hold of some.

But the big thing, I think, is that there was very little debt in the economy in the 1950s. Very little private debt. People were not burdened by debt. Repayment of debt was not a massive drain on the money that people had. We didn't need a lot of money growth to compensate for that drain, because that drain did not exist.

Oh, sure, there was a lot of debt in the economy in the 1950s if you look at government debt. We had lots of debt left over from fighting a world war. But that particular debt was evidently not a problem requiring a more rapid increase in money growth. The money growth could stay close to zero, even with a high level of government debt, because private debt was low.

But the economy was growing, and private debt was starting to accumulate.

What was going on before that sudden final spike?


What was going on, in the years before that sudden final spike, was the growth of debt. Mostly private debt, in fact.

Graph #5: Total Credit Market Debt (blue), the Federal Share of it (red) and Base Money (green)

See the zero line? Horizontal, faint gray, mostly hidden by the green line. All the area from the red line down to the zero line is debt of the Federal government. All the area from the red line up to the blue line is everybody else's debt, not the Federal debt.

What was going on in the years before 2008 was the growth of private debt.

Oh, and the green line? That's the monetary base. That's the money shown as the blue line on Graph #1. It shows the money the Federal Reserve put into the economy.

The green line shows how much money the Federal Reserve put into the economy. The red line shows how much the Federal government put into the economy. And from the red line up to the blue line shows how much debt the rest of us put into the economy.

But here's the thing: All of that debt, the red and the blue, is made up of multiple instances of the money shown  as the green line. Multiple instances? Yeah, like in AutoCAD after you define a block you can insert it many times, but there is still only one block defined. Or like in object-oriented programming after you create an object, you can use multiple instances of it, but you've still created only one object.

Yeah, money is usually created from nothing. But when it's time to pay it back, you can't pay it back from nothing. To pay it back you need money in hand, or in your pocket, or in your wallet, or your bank account, or somewhere. The dollars we have to pay back are all instances of a money object. And each money object has to cover many instances, or there'll be hell to pay.

All of the money above the green line -- the money recycled by borrowing (red) and the money created by borrowing (blue) -- everything above the green line is money that costs interest.

Graph #6: Total Credit Market Debt and the Federal Share, per Dollar of Base Money

Graph #6 shows the same three number sets as Graph #5, except this time each one is divided by base money. So the green line (base money) for example shows how many dollars of base money there are for each dollar of base money. Of course, there is just one dollar of base money for each dollar of base money, so the green line is now a perfectly flat and straight line with a constant value of 1.

The red line shows how much Federal debt there is, for each dollar of base money. Just by eye, it looks to be mostly between $6 and $8 dollars of Federal debt per dollar of base. So now, if every dollar of government debt carries an interest cost of 3%, the Federal government will be paying between 18 and 24 cents interest, per dollar of base money.

The blue line shows how much credit market debt there is in total, for each dollar of base money. At the high end, it ranged from $40 in 1994 to $60 in 2008. If every dollar of credit market debt carried an interest cost of 3%, the total interest cost in 1994 would have been $1.20 per dollar of base money, and in 2008, $1.80 per dollar of base money.

When debt accumulates to a high multiple of base money, the interest on that debt absorbs much or all of the base, leaving little or no money for anything else. In such conditions the Federal Reserve is forced to increase the growth rate of base money to maintain some measure of balance. Reduce money growth to zero in those conditions, and you create a Depression.

The sudden spike of base money shown on Graph #1 and fretted at Reddit is an attempt by the Federal Reserve to correct an imbalance. The upspike on Graph #1 is matched by the sheer drop of the blue line on Graph #6, as the Fed radically increased base money in an attempt to lower the level of that blue line.

Was it the right policy? No. The problem is not that there was too little base money. The problem was that there was too little base money relative to accumulated public and private debt. (Or possibly, relative to private debt, or to debt other than Federal debt, or something in that ballpark.) The problem is that there is too much debt.

And the correct solution in any case would have been to reduce accumulated debt.

What is it that creates the need for base money to spike up?


I took annual FRED data for total debt (1950-2012) and for base money (1918-2012) and put it in a spreadsheet with total debt numbers (1916-1970) from the Historical Statistics (Bicentennial Edition). The two debt series don't match up perfectly, but trends are trends and it is what it is:


Graph #7: Debt Relative to Base Money, 1918-2012
The Google Drive Spreadsheet is available

Notice anything unusual?

Total debt increased relative to base money until it created the Great Depression. Then there was a period of "correction", and a war. And then total debt increased relative to base money until it created the Great Recession.

Here's a question: What happens, that creates the need for base money to spike up suddenly in massive quantity?

Here's the answer: Debt accumulates until it creates problems. And then debt continues to accumulate, until some policymaker decides to do something about it.

Saturday, June 8, 2013

But saving is its own reward!


Recent remarks by Jim got me looking at the components of money. One thing led to another and I ended up looking at checking-account deposits versus total deposits at all commercial banks:

Graph #2: Total Deposits (blue) and Checking Account Deposits (red)
The red line is money that the 99% use to buy gasoline and groceries. The blue line is the money that the 1% use to make more money.

Let me interrupt myself to say I know that all of us want to be among the 1%. And I have no trouble thinking of myself as 99% "part of the 99%" and 1% "part of the 1%". There's no class warfare going on here. Anyway...

Here is the red line as a share of the blue... Demand deposits as a share of total deposits:

Graph #3: Demand Deposits as a Falling Share of Total Deposits (the rest of it is savings)

A smaller and smaller share of our money remains circulating, where it may be used for things like gasoline and groceries and payroll. A larger and larger share of our money is already stashed away in savings. More and more, it is true that if we need a dollar we have to borrow a dollar. This is the result of policies that restrict money to fight inflation, and policies that encourage saving.

Friday, June 7, 2013

Superior Growth and the Ratio of Non-Federal Debt to Federal Debt


Yesterday's graph was about what it takes to have a healthy, growing economy.

If you take that graph...

Graph #1: NonFederal Debt as a Multiple of Federal (blue) and Percent Change of Potential GDP (red)

... subtract the blue line from the red line...

Graph #2: % Change in Potential GDP less the Ratio of Non-Federal to Federal Debt

... and take the natural log of that...

Graph #3: Natural Log of (% Chg in Potential GDP less the Ratio of Non-Federal to Federal Debt)

... all that remains in the plot window are the very good years -- the "golden age" of the 1950s and '60s, and a bit of the "miracle" years of the 1990s.

Yesterday's graph was about what it takes to have a healthy, growing economy.

Thursday, June 6, 2013

Reprise: Debt and Potential GDP


Building on mine of 31 March 2013...

Graph #1: NonFederal Debt as a Multiple of Federal (blue) and the Rate of Change of Potential GDP (red)

In the early years when the blue line is low, the red line is high. In the late years when the blue line is high, the red line is low.

In the early years when Non-Federal debt is low (relative to Federal debt), Potential Output is high. In the late years when Non-Federal debt is high (relative to Federal), Potential Output is low. Now you have everything you need to fix the global economy.

Wednesday, June 5, 2013

Totsie and Caput


Graph #1: Total Commercial and Industrial Loans ("Totsie")

Graph #2: Capacity Utilization ("Caput")

Graph #3: Capacity Utilization per Dollar of Commercial and Industrial Loans