Showing posts with label flash crash. Show all posts
Showing posts with label flash crash. Show all posts

Tuesday, November 8, 2016

Top VIX Crushes in History

Yesterday’s sharp downward move in the VIX gave me a reason to tweet that the volatility crush as seen in the SPX and VIX was among the top 25 in history.  Upward pressure on the VIX toward the end of the session dropped the VIX down to the 30th largest VIX decline in history, but along the way the Twitterati raised a number of questions about volatility crushes and the VIX as a measurement tool of broad market volatility crushes.

Since I have never seen any data related to the VIX and volatility crushes before, I thought this might be an opportunity to present some of my data and talk about the findings.  In the chart below, I have captured the 25 largest one-day declines in the VIX since 1990 and have presented data showing the forward performance of the SPX in periods from one to 100 days and I have also added some brief commentary regarding the causes.  In some cases I link the volatility crush to a previous VIX spike and use some explanatory shorthand in the process.  For instance, the top crush day, May 10, 2010, followed 2 days after the 21st largest VIX spike (“2d+ #21”).


[source(s):  CBOE, VIX and More]

Of course, most of these volatility crush days coincided with huge jumps in the SPX, but there are some interesting exceptions, not the least of which was the 0.04% decline in the SPX back on April 11, 1990.  That just happens to be the only day for which I cannot find any obvious explanatory catalyst – to the extent that a 0.04% in stocks can actually have a catalyst – but given the proximity to the upcoming Gulf War, my guess is that some sort of news related to Iraq played into this event.

Note also how many of these volatility crush instances follow other important market-moving high fear events one or two days later, in true mean reversion fashion.  Examples on this list range from the flash crash, Greece, Lehman Brothers and Bear Stearns to several VIX all-time highs, Russian political and economic crises, the Boston marathon bombing, etc.

Things get even more interesting if you compare the top 25 VIX crushes to the top 25 VIX spikes in history (for an identical table recapping the top 25 spikes refer to Last Two Days Are #5 and #6 One-Day VIX Spikes in History.)  For starters, the top 25 VIX spikes all move up at least 31%, while none of the top 25 VIX crushes managed to eclipse the 30% decline level.  Also note the differences in the mean reversion predictive value of spikes versus crushes.  In general, the performance of the SPX following VIX crushes is modestly lower than that of the SPX in general.  On the other hand, the performance of the SPX following VIX spikes is generally better than the SPX in general – much more so if the September 29, 2008 outlier is dropped from the data set.

Another point that I think is worth making speaks to the overall changes in the volatility space.  The critical data point is that 11/25 of the top 25 VIX crushes happened since the beginning 2010, while 14/25 of the top 25 VIX spikes have occurred during the same period.  This means that we have had as much in the way of big volatility moves in the list seven years as in the previous twenty years of VIX data.  In other words, the volatility landscape is changing and the rise of VIX futures and VIX ETPs are no doubt an important part of that change.

For those who may be interested, you can always follow me on Twitter at @VIXandMore

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Disclosure(s): the CBOE is an advertiser on VIX and More

Tuesday, January 5, 2016

The Year in VIX and Volatility (2015)

Every year one of my most-read posts is my annotated overview of the year in VIX and volatility.  Now that I have been doing this for the past eight years, the aggregated view of volatility from 2008 to the present makes for a fascinating concise history not just of volatility, but more broadly of the financial markets and of economic activity in general.

The graphic below captures most of the highlights from 2015 and from a volatility perspective, it was a year for the record books.  During August we saw the largest one-week VIX spike (+113%) that resulted from unprecedented back-to-back days of VIX spikes of more than 45%!  The cumulative jump in the VIX pushed the VIX to a high of 53.29 – the only time outside of the 2008-09 financial crisis since the launch of the VIX in 1993 that the VIX has topped 50.



[source(s): VIX and More]

While most investors pointed to China as the proximate cause of the record VIX spike(s), a VIX and More fear poll one week after the big VIX spike also highlighted “market structural integrity (HFT, flash crash, exchange issues, etc.)” as almost on par with China concerns, with “market technical factors (breach of support, end of trend, etc.)” not that far behind.

The balance of the year saw a wide variety of events that moved the markets, including the Fed’s first rate hike in nine years; crude oil plummeting to $34/bbl.; shock waves in the high-yield bond market due to low oil prices; chilling terrorist attacks in Paris and in California; Puerto Rico announcing it will default on some of its debt; turmoil in the currency markets when the Swiss National Bank ended the peg of the Swiss franc to the euro; a dramatic boom-bust cycle in Chinese A-shares – and a flurry of ineffective interventions on the part of the Chinese government to restore stability; a proxy war between Saudi Arabia and Iran in Yemen; and the European Central Bank committing to $1.2 trillion of quantitative easing.

As noted previously, even with all of the volatility, Every Single VIX ETP (Long and Short) Lost Money in 2015.

Finally, since 2011, I have been maintaining a proprietary Macro Risk Index that measures volatility and risk across a broad range of asset classes, including U.S. equities, foreign equities, commodities, currencies and bonds.  In 2015, the Macro Risk Index was consistently higher than it has been during any year since the 2011 inception.

What does high volatility in 2015 mean for 2016?  During the past two weeks, Barron’s published two opposing (but not necessarily inconsistent) perspectives on volatility in 2016.  For the case for rising volatility and what to do about it, try Jared Woodard’s Prepare for Rising Volatility in 2016.  I provide the contrarian point of view in The Case Against High Stock-Market Volatility in 2016.


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Disclosure(s): net short VIX at time of writing

Friday, December 21, 2012

Volatility During Crises

[The following first appeared in the August 2011 edition of Expiring Monthly: The Option Traders Journal. I thought I would share it because it might help some readers put the current fiscal cliff crisis in historical context.]

The events of the last three weeks are a reminder that financial crises and stock market volatility can appear almost instantaneously and mushroom out of control before some investors even have a chance to ask what is happening. A case in point: on August 3rd investors were breathing a sigh of relief after the United States had finalized an agreement to raise the debt ceiling; at that time, the VIX stood at 23.38, reflecting a relative sense of calm, yet just three days later, the VIX jumped to 48.00 as two new crises displaced the debt ceiling issue.

Spanning the globe from Northern Africa, Japan, Europe and the United States, 2011 has seen no shortage of crises in the first eight months of the year. Given this pervasive crisis atmosphere, it is reasonable for investors to consider how much volatility they should anticipate during a crisis. In this article I will attempt to put crises and volatility in some historical perspective and address a variety of factors that affect the magnitude and duration of volatility during a crisis, drawing upon fundamental, technical and psychological causes.

Volatility in the Twentieth Century

Every generation likes to think that the issues of their time are more daunting and more complex than those faced by prior generations. No doubt investors fall prey to this kind of thinking as well. With a highly interconnected global economy, a news cycle that races around the globe at the speed of light and high-frequency and algorithmic trading systems that have transferred the task of trading from humans to machines, there is a lot to be said for the current batch of concerns. Looking at just the first half of the twentieth century, however, investors had to cope with the Great Depression, two world wars and the dawn of the nuclear age.

Given that the CBOE Volatility Index (VIX) was not launched until 1993, any evaluation of the volatility component of various crises prior to the VIX must rely on measures of historical volatility (HV) rather than implied volatility. As the S&P 500 index on which the VIX is based only dates back to 1957, I have elected to use historical data for the Dow Jones Industrial Average dating back to before the Great Depression. In Figure 1 below, I have collected peak 20-day historical volatility readings for selected crises from 1929 to the present.

Before studying the table, readers may wish to perform a quick exercise by making a mental list of some of the events of the 20th century that constituted immediate or deferred threats to the United States, then compare the magnitude of that threat with the peak historical volatility observed in the Dow Jones Industrial Average. If you are like most historians and investors, after looking at the data you will probably conclude that the magnitude of the crisis and the magnitude of the stock market volatility have at best a very weak correlation.

[source(s): Yahoo]

Any ranking of crises in which the Cuban Missile Crisis and the attack on Pearl Harbor rank in the lower half of the list is certain to raise some eyebrows. Frankly I would have been surprised if even one of these events failed to trigger a historical volatility reading of 25, but seeing that was the case for half the crises on this list certainly provides a fair amount of food for thought.

Volatility in the VIX Era

With the launch of the VIX it became possible not only to evaluate historical volatility, but implied volatility as well. With only 18 years of data to draw upon, there is a limited universe of crises to examine, so in the table in Figure 2 below, I have highlighted the seven crises in the VIX era in which intraday volatility has reached at least 48. Additionally, I have included five other crises with smaller VIX spikes for comparison purposes.

[source(s): CBOE, Yahoo]

[Some brief explanatory notes will probably make the data easier to interpret. First, the crises are ranked by maximum VIX value, with the maximum historical volatility in an adjacent column for an easy comparison. The column immediately to the right of the MAX HV data captures the number of days from the peak VIX reading to the maximum 20-day HV reading, with negative numbers (LTCM and Y2K) indicating that HV peaked before the VIX did. The VIX vs. HV column calculates the amount in percentage terms that the peak VIX exceeded the peak HV. The VIX>10%10d… column reflects how many days transpired from the first VIX close above its 10-day moving average to the peak VIX reading. The SPX Drawdown column calculates the maximum peak to trough drawdown in the S&P 500 index during the crisis period, not from any pre-crisis peak. The VIX:SPX drawdown ratio calculates the percentage change in the VIX from the SPX crisis high to the SPX crisis low relative the percentage change in the SPX during the same period (of course these are not necessarily the VIX highs and lows during the period.) The SPX low relative to the 200-day moving average is the maximum amount the SPX fell below its 200-day moving average during the crisis. Finally, the last two columns capture the number of consecutive days the VIX closed at or above 30 during the crisis and the number of days the SPX closed at least 4% above or below the previous day’s close during the crisis.]

Looking at the VIX era numbers, it is not surprising that the financial crisis of 2008 dominates in many of the categories. Reading across the rows, one can get an interesting cross-section of each crisis in terms of various volatility metrics, but I think some of the more interesting analysis comes from examining the columns, where we can learn something not just about the nature of the crises, but also about volatility as well. One important caveat is that the limited number of data points does not allow for this to be a statistically valid sample, but that does not preclude the possibility of drawing some potentially valuable and actionable conclusions.

Looking at the peak VIX reading relative to the peak HV reading I note that in all instances the VIX was ultimately higher than the maximum 20-day historical volatility reading. In the five lesser crises, the VIX was generally 50-80% higher than peak HV. In the seven major crises, not surprisingly HV did approach the VIX in several instances, but in the case of the 9/11 attack and the 2010 European sovereign debt crisis the VIX readings grossly overestimated future realized volatility.

One of my hypotheses about the time between the first VIX close above its 10-day moving average and the ultimate maximum VIX reading was that the longer the period between the initial VIX breakout and the maximum VIX, the higher the VIX spike would be. In this case the Long-Term Capital Management (LTCM) and 2008 crises support the hypothesis, but the data is spotty elsewhere. The current European debt crisis, Asian Currency Crisis of 1997 and 9/11 attack all reflect a very rapid escalation of the VIX to its crisis high. In the case of the May 2010 ‘Flash Crash’ and the Fukushima Nuclear Meltdown, the maximum VIX reading happened just one day after the initial VIX breakout. As many traders use the level of the VIX relative to its 10-day moving averages as a trading trigger, the data in this column could be of assistance to those looking to fine-tune entries or better understand the time component of the risk management equation.

Turing to the SPX drawdown data, the Asian Currency Crisis stands out as one instance where the VIX spike seems in retrospect to be out of proportion to the SPX peak to trough drawdown during the crisis. On the other side of the ledger, the drawdown during the Dotcom Crash appears to be consistent with a much higher VIX reading. Here the fact that it took some 2 ½ years for stocks to find a bottom meant that when the market finally bottomed, investors were somewhat desensitized and some of the fear and panic had already left the market, which is similar to what happened at the time of the March 2009 bottom. Note that the median VIX:SPX drawdown ratio for all twelve crises is 10.0, which is about 2 ½ times the movement in the VIX that one would expect during more normal market conditions.

The data for the SPX Low vs. 200-day Moving Average is similar to that of the SPX drawdown. For the most part, any drawdown of 10% or more is likely to take the index below its 200-day moving average. In the seven major crises profiled above, all but the Asian Currency Crisis dragged the index below its 200-day moving average; on the other hand, in all but one of the lesser crises the SPX never dropped below its 200-day moving average. Based on this data at least, one might be inclined to include the 200-day moving average breach as one aspect which helps to differentiate between major and minor crises.

As I see it, the last two columns – consecutive days of VIX closes over 30 and number of days in which the SPX has a 4% move – are central to the essence of the crisis volatility equation. Since the dawn of the VIX, the SPX has experienced a 2% move in about 80% of its calendar years, the VIX has spiked over 30 about 60% of the years, and the SPX has seen at least one 4% move in about 40% of those years. Those 4% moves are rare enough so that they almost always occur in the context of some sort of major crisis. In fact, one could argue that a 4% move in the SPX is a necessary condition for a financial crisis and/or a significant volatility event.

Fundamental, Technical and Psychological Factors in Crisis Volatility

Crises have many different causes. In the pre-VIX era, we saw a mix of geopolitical crises and stock market crashes, where the driving forces were largely fundamental ones. During the VIX era, I would argue that technical and psychological factors become increasingly important. The rise of quantitative trading has given birth to algorithmic trading, high-frequency trading and related approaches which place more emphasis on technical data than fundamental data. At the same time, retail investing has been revolutionized by a new class of online traders and the concomitant explosion in self-directed traders. This increased activity at the retail level has added a new layer of psychology to the market.

In terms of fundamental factors, one could easily argue that the top nine VIX spikes from the list of VIX era crises all arise from just two meta-crises, whose causes and imperfect resolution has created an interconnectedness in which subsequent crises are to a large extent just downstream manifestations of the ripple effect of the original crisis.

The first example of the meta-crisis effect was the 1997 Asian Currency Crisis, which migrated to Russia in the form of the 1998 Russian Ruble Crisis, which played a major role in the collapse of Long-Term Capital Management.

The second example of meta-crisis ripples begins with the Dotcom Crash and the efforts of Alan Greenspan to stimulate the economy with ultra-low interest rates. From here it is easy to draw a direct line of causation to the housing bubble, the collapse of Bear Stearns, the 2008 Financial Crisis and the recurring European Sovereign Debt Crisis. In each case, the remedial action for one crisis helped to sow the seeds for the next crisis.

In addition to the fundamental interconnectedness of these recent crises, it is also worth noting that the lower volatility crises were largely point or one-time-only events. There was, for instance, only one Hurricane Katrina, one turn of the clock for Y2K and one earthquake plus tsunami in Japan. As a result, the volatility associated with these events was compressed in time and accordingly the contagion potential was limited. By contrast, the major volatility events are more accurately thought of as systemic threats that ebbed and flowed over the course of an extended period, typically with multiple volatility spikes. In the same vein, the attempted resolution of these events generally included a complex government policy cocktail, whose effects were gradual and of largely indeterminate effectiveness.

Apart from the fundamental thread running through these crises, I also believe there is a psychological thread that sometimes spans multiple crises. Specifically, I am referring to the shadow that one crisis casts on future crises that follow it closely in time. I call this phenomenon ‘disaster imprinting’ and psychologists characterize something similar as availability bias. Simply stated, disaster imprinting refers to a phenomenon in which the threats of financial and psychological disaster are so severe that they leave a permanent or semi-permanent scar in one’s psyche. Another way to describe disaster imprinting might be to liken it to a low-level financial post-traumatic stress disorder. Following the 2008 Financial Crisis, most investors were prone to overestimating future risk, which is why the VIX was consistently much higher than realized volatility in 2009 and 2010.

While it is impossible to prove, my sense is that if the events of 2008 were not imprinted in the minds of investors, the current crisis atmosphere might be characterized by a much lower degree of volatility and anxiety.

Conclusion

As this goes to press, the current volatility storm is drawing energy from concerns about the European Sovereign Debt Crisis as well as fears of a slowdown in global economic activity. The rise in volatility has coincided with a swift and violent selloff in stocks that has seen six days in which the S&P 500 index has moved at least 4% either up or down – a rate that is unprecedented outside of the 2008 Financial Crisis.

Ultimately, the severity of a volatility storm is a function of both the magnitude and the duration of the crisis, as well as the risk of contagion to other geographies, sectors and institutions. Act I of the European Sovereign Debt Crisis, in which Greece played the starring role, can trace its origins back to December 2009. In the intervening period, it has spread across Europe and has sent shockwaves across the globe.

By historical standards the volatility aspect of the current crisis is more severe than at any time during World War II, the Cuban Missile Crisis and just about any crisis other than the Great Depression, Black Monday of 1987 and the 2008 Financial Crisis.

In the data and commentary above, I have attempted to establish some historical context for volatility during various crises extending back to 1929 and in the process give investors some metrics for evaluating current and future volatility spikes. In addition, it is my hope that concepts such as meta-crises and disaster imprinting can help to bolster the interpretive framework for investors who are seeking a deeper understanding of volatility storms and the crises from which they arise.

Related posts:

Disclosure(s): none

Tuesday, January 4, 2011

The Year in VIX and Volatility (2010)

One of everybody’s favorite charts from a year ago was the basis for Chart of the Week: The VIX and Volatility in 2009, in which I created a fairly concise annotated summary of the year in VIX and volatility.

For some reason, the same chart seemed harder to create for 2010, partly because the volatility triggers were less discrete and seemed to arrive in recurring waves, each time apparently posing a different size threat. The European sovereign debt crisis is a prime example of the waves of threats, as are the concerns about China’s ability to navigate the dual hazards of slowing growth and rising inflation. In the U.S., concerns about a double-dip recession waxed and waned, while investors scratched their heads wondering just how much to worry about the foreclosure crisis or events on the Korean peninsula.

On the volatility side, the highlights of 2010 included the ‘flash crash’ in May and an even bigger VIX spike (to 48.20) toward the end of the month as the European sovereign debt crisis threatened to snowball out of control, pushing the VIX to a higher close than at any point prior to the 2008 financial crisis.

Investors also struggled under the psychological weight of the Deepwater Horizon oil spill in the Gulf of Mexico, which imparted a sense of helplessness across the U.S. and helped to dampen any sort of optimism about the economy and perhaps even technological progress in general.

In spite of all this, stocks rallied impressively for the last four months of the year, due in part to a second round of quantitative easing on the part of the Fed.

The year saw record volumes in a number of VIX-related products and included new daily record volumes in VIX options (June 11), VIX futures (November 16) and the increasingly popular iPath S&P 500 VIX Short-Term Futures ETN, which most investors know by its ticker symbol, VXX (November 23).

Volatility made its mark as a peripheral asset class in 2010, with VIX-based ETNs, making it much easier for retail investors to make direct investments in volatility. My guess is that this development is just a beginning and 2011 could mark a watershed year in terms of recognizing of volatility as a mainstream asset class.

Related posts:


[source: StockCharts.com]

Disclosure(s): short VXX at time of writing

Sunday, October 3, 2010

Chart of the Week: Visualizing the Flash Crash

This week the allied forces of the SEC and CFTC released their joint report on the ‘flash crash’ with the title of Findings Regarding the Market Events of May 6, 2010.

While many were underwhelmed by the report, it provides traders with a sense of some of what happened during a day in which the Dow Jones Industrial Average fluctuated some 1138 points.

The chart of the week below shows what happened to IWM, the highly liquid ETF for the Russell 2000 index. IWM trades more than 60 million shares per day and is regularly one of the most active issues traded. Up until 2:43 p.m. ET, IWM was acting normally. Then as the price (dashed line, right scale) began to accelerate downward, liquidity (green and blue bands, left scale) suddenly began to dry up. By 2:46 p.m., market depth (the height of the green and blue bands) in IWM had almost completely disappeared. Over the course of the 74 minutes left in the normal trading session, liquidity began to return slowly to the markets. At the time the markets closed, approximately 60% of the normal market depth from earlier in the day had returned to IWM.

The report linked above has some interesting graphics surrounding trading in ACN, PG, MMM, IBM, AAPL, GE and IWM beginning on page 91 of the PDF. If anything, the action in IWM is the least extreme of the group.

If you have some time, the report is worth at least a scan.

Related posts:



[source: SEC and CFTC]

Disclosure(s): none

Tuesday, May 18, 2010

Volatility and Wide-Range Days with Neutral Closes

A reader notes:

The VIX tends to move inversely with the market on a day-to-day basis. Market up = VIX down and market down = VIX up. That’s all fine and dandy MOST of the time (I’m stating the obvious here) because of expectations about the asymmetry of volatility during bull versus bear moves. But how do we square moves like Monday (05/17) when, even though the close-to-close change in the market was very small, the intraday move was very large (with implications re: continued high volatility), yet the VIX still fell? Does the VIX (from a statistical correlation perspective) only care about close-to-close changes? Isn’t that a bit shallow?
This is an excellent comment and set of questions.
In terms of background, consider that measures of volatility based on actual changes in the price of the underlying break out into two camps:
  1. those that focus on close-to-close price changes and ignore/understate intraday price movements (e.g., historical volatility)

  2. those that include intraday price variations in their calculations (e.g., average true range)
Here is where an example might help to clarify things. Take the recent ‘flash crash’ of May 6th. Even though the close-to-close change in the S&P 500 index (SPX) was a very large 3.24%, the intraday range was a whopping 8.73%. So which was the better measure of volatility on that day? My guess is that anyone who was watching the markets as they crashed would vote for the 8.73% move, as things certainly felt more like the panic of October 2008 than the relative calm of October 2007.

Given that implied volatility values such as the VIX are calculated directly from options prices, in theory the VIX does not strictly account for intraday prices. Also, technically the VIX is the market's forward estimate of close-to-close volatility in the SPX. So from a pure statistical perspective, the VIX does indeed have a narrow close-to-close time horizon and is blind to intraday fluctuations in prices.

In practice, however, a wide range day with a relatively benign close-to-close number will typically reinforce the idea that the market is ripe for large volatility moves, even if these moves may cancel each other out on intraday basis. In my opinion, mapping these changes in price to changes in volatility is where fundamental factors and path dependency come into play. If stocks go up 3% intraday, for example, then fall back to even due to news that, say, the government had to prop up a U.K. bank, Spain has announced it will not implement austerity measures, a Fed member makes a speech in which he or she suggests interest rate hikes are coming soon, there is a terrorist attack in Israel, etc., you would expect to see the VIX price in more volatility in the next 30 days. On the other hand, if stocks start the day down 3%, but closed even following news that lots of jobs were created, housing prices are increasing, the euro rallied to 1.30, etc., then I would expect the VIX to price in less volatility in the next 30 days.

In brief, on a wide range day, I would look hard at the fundamentals or what I call the Forces Acting on the VIX, as well as perhaps the elements of volatility I summarized in A Conceptual Framework for Volatility Events. If news suggests that an obvious threat to the market has been eliminated or diminished significantly, then I would expect the VIX to fall, depending upon the applicability of the dragon metaphor. If a new threat crops up or an old one suddenly seems more robust, then I would expect to see a rising VIX.

Even when stocks seem to turn the corner and put a threat behind it, there is often some sort of psychological hangover that behavioral economists would probably call “availability bias” and I have termed “disaster imprinting.” This is the type of thing that happens on a wide range day that ends with a neutral close. So while the VIX is really estimating what historical close-to-close volatility will be 30 days hence, the presence of wide intraday moves almost necessarily forces options traders to consider increasing their estimates of the probability and/or magnitude of large market moves going forward.
Finally, getting back to your question about last weekend, part of what happened was that on Friday skittish investors bought so much portfolio insurance that the VIX priced in the possibility of a very large volatility event. When Monday's reality fell short of Friday's worst fears, the VIX began to fall.

For more on related subjects, readers are encouraged to check out:
Disclosure(s): short VIX at time of writing

Thursday, May 6, 2010

Some Thoughts on the Seis de Mayo Mini-Crash

There are a lot of excellent charts and commentary out there, but before I called it a night, I thought I would share a couple of thoughts about today’s action and the market’s prospects for tomorrow and beyond.
So…in no particular order:

  • The possibility of a fat finger order entry error cannot be dismissed, but even if there were one or more unintentional large trades, this does not nullify the concerns about sovereign debt contagion, breaking of technical support, recent excessive bullish sentiment, etc.
  • The bottom line is that stocks still have serious problems of a fundamental and technical nature.
  • Today’s correction would not have been so steep if stocks had not rallied so sharply, with only brief interruptions, for the past 14 months.
  • The VIX spiked over 40 today. While there is no magic number that signals a VIX top, the volatility index is up more than 110% in the last 18 trading days. Apart from September-October 2008, this has never happened in the 17 years since the VIX was launched.
  • Whether tomorrow morning opens up or down, I would not give much credence to any big moves at the open tomorrow. If I trade at all in the first half hour, I expect I will be fading any big moves.
  • Looking next week and beyond, I would not be surprised to see stocks enter into a trading range, with the late April highs as a top and today’s lows as a bottom.
  • Traders should keep in mind that watching and waiting for more market clarity is an appropriate strategy at times. Patience and discipline almost always trump trying to make something happen.
  • In times of increased uncertainty, I try to focus on preserving capital, evaluating the fundamental causes and likely duration of high uncertainty, targeting only high reward-risk opportunities, scaling in to new positions, and adhering to stringent stop loss and position management guidelines.
  • Finally, a personal motto is, “In volatility, there is opportunity!”
For more on related subjects, readers are encouraged to check out:


Disclosure(s): short VIX at time of writing

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