Eurojackpot results

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Low-High Patterns From The Actual EuroJackpot Results

If we can use probability to analyze how odd-even patterns behave in a random game, then we can use the same analysis for other patterns.

Below is another study that involved low-high number patterns, and the results reinforce the fact that the EuroJackpot game follows the dictate of probability.

Here are the following sets:

Low = {1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16,17,18,19,20,21,22,23,24,25}

High = {26,27,28,29,30,31,32,33,34,35,36,37,38,39,40,41,42,43,44,45,46,47,48,49,50}

Here are the low-high patterns and their corresponding probability prediction compared to the observed frequency from the same historical results:

Again, you should notice the agreement between prediction and the actual results.  It reinforces the fact that probability theory is a reliable mathematical tool to understand how numbers behave in a random game.

Through probability theory, we know that the best low-high number patterns in EuroJackpot are 3-low-2-high and 2-low-3-high patterns.  Then we can forget about the rest.

Why You Are Not Winning the EuroJackpot 5/50 Game

It’s not easy to win the EuroJackpot game.  From a layman’s perspective, if you play one ticket each time, it takes 95 million attempts (probably more) to win the jackpot.

But apart from the odds, one of the main reasons why you are not winning the EuroJackpot is that you use the wrong strategy.  And you aren’t even aware that you’re doing it all wrong.

And that’s the worst thing, you can’t fix something that you don’t know exists.

For example, if you play the game randomly or by using a quick pick method, special dates, hot numbers, cold numbers, or even using whimsical beliefs such as lottery spell, psychic reading, horoscope reading, numerology, or any superstitious approach, chances are you’ve been wasting money playing the lottery.

All these approaches don’t understand how numbers behave in a random game.  If your goal is to win the EuroJackpot, then you should have a full grasp of how random event behaves from a probability point of view.

For example, many lotto players get used to “hot and cold numbers.” People gather the previous draws and use statistics to determine which numbers are hot and which numbers are cold.  So many players believe that statistics can give a clue on how to win the EuroJackpot.

Truth be told, you don’t need statistics to understand how a random game like the EuroJackpot game works.  And this belief must be corrected once and for all.

So many people believe that statistics is the same as probability.  No. They are not the same.

Now, you may ask.  If statistics will not help me, what will?

Well, there are two mathematical tools you can use. First is combinatorics (or combinatorial mathematics). Then the second one is the probability theory.

The two mathematical tools are the key to lottery success.

Let me give you a few hints of how these two mathematical tools work together in a EuroJackpot 5/50 game. At the end of this article, I expect that you will finally realize the difference between the best and the worst combination.

For you to have a full grasp of the method involved, you have to understand the following:

  1. The behavior of odd-even number patterns
  2. The behavior of low-high number patterns
  3. The power of an advanced combinatorial design (you should not miss this one)

Let me start the discussion with a simple odd-even pattern analysis.

The Contradiction Between Low-High and Odd-Even Patterns

When we deal with two separate analyses, we can see two opposing viewpoints.  And that’s how combinatorial math and probability theory can be problematic.  So we must be cautious.

For example, a combination such as 1-2-3-4-5 is one of the best when we base our conclusion from the odd-even pattern analysis.

However, the low-high pattern analysis will put the same combination under the worst probability group.  Hence playing with such combination will only waste your money.

Fortunately, mathematics has a solution.  We can put the two analyses together into one combinatorial equation.  And the result of this fusion is what we call now Lotterycodex patterns.

These Lotterycodex patterns will tell you exactly which combinations are the best, the worst, and everything in between.  Through these patterns, you get to understand the big picture of the EuroJackpot game.

Let’s dig deeper into these advanced combinatorial patterns and how they work for EuroJackpot.

Are you ready for the next level?

Predicting the Outcome of the EuroJackpot Game

As you see, the actual EuroJackpot results prove that probability works.

Thanks to probability because we have the means to know the best and the worst one.  It’s the same tool we use to predict the outcome of the lottery (to an extent).

For example, if we want to know in advance the outcome of EuroJackpot after 2000 draws, we use this formula below:

If P(pt) = is the probability of pattern pt,

Then,

Predicted frequency = P(pt) x 2000 draws

If we continue to use the same calculation for the rest of the patterns, we will come up with the following EuroJackpot predictions:

Pattern Probability Estimated Frequency in 2000 draws
3-odd-2-even 0.3256621797655230 651 times
2-odd-3-even 0.3256621797655230 651 times
4-odd-1-even 0.1492618323925310 299 times
4-even-1-odd 0.1492618323925310 299 times
5-odd-0-even 0.0250759878419453 50 times
5-even-0-odd 0.0250759878419453 50 times

The difference between the best and the worst patterns is huge.

That is the basic idea of using math in your lottery game. With probability, you know how to play EuroJackpot with the best shot possible.

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