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==Explanation==
 
==Explanation==
This is a list of probabilities for different events. There are numerous recurring themes, of which the most common are free throws (13 entries), birthdays (12), dice (12, split about evenly between 6-sided (d6) and 20-sided (d20) types), {{w|M&M's|M&M}} candies (11), playing cards (9), {{w|NBA}} basketball mid-game victory predictions (9), {{w|Scrabble}} tiles (7), coins (7), white Christmases (7), and the NBA players {{w|Stephen Curry}} and {{w|LeBron James}} (7 each). Themes are variously repeated and combined, for humorous effect. For instance, there are entries for both the probability that St. Louis will have a white Christmas (21%) and that it will not (79%). Also given is the 40% probability that a random Scrabble tile will contain a letter from the name "Steph Curry". There are 80 items in the list, the last two of which devolve into absurdity - perhaps from the stress of preparing the other 78 entries.
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{{incomplete|Created by LEBRON JAMES THROWING M&Ms AT A KEYBOARD. The table for the explanations of the chances isn't complete, nor is the transcript. Do NOT delete this tag too soon.}}
  
The list may be an attempt to better understand probabilistic election forecasts for the {{w|2020 United States presidential election}}, which was four days away at the time this comic was published and had also been alluded to in [[2370: Prediction]] and [[2371: Election Screen Time]]. Statistician and {{w|psephologist}} [[Nate Silver]] is referenced in one of the list items. On the date this cartoon was published, Nate Silver's website {{w|FiveThirtyEight}} was [https://projects.fivethirtyeight.com/2020-election-forecast/ publishing forecast probabilities] of [[Donald Trump]] and [[Joe Biden]] winning the US Presidential election. On 31 October 2020, the forecast described the chances of Donald Trump winning as "roughly the same as the chance that it’s raining in downtown Los Angeles. It does rain there. (Downtown L.A. has about 36 rainy days per year, or about a 1-in-10 shot of a rainy day.)" A day previously, when the chances were 12%, the website had also described Trump's chances of winning as "slightly less than a six sided die rolling a 1". The probabilities are calculated from [https://xkcd.com/2379/sources/ these sources], as mentioned in the bottom left corner of the comic.
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This is a list of probabilities for different events. There are numerous recurring themes, of which the most common are free throws (13 entries), birthdays (12), dice (12, split about evenly between 6-sided (d6) and 20-sided (d20) types), {{w|M&M's|M&M}} candies (11), playing cards (9), {{w|NBA}} basketball mid-game victory predictions (9), {{w|Scrabble}} tiles (7), coins (7), white Christmases (7), and the NBA players {{w|Stephen Curry}} and {{w|LeBron James}} (7 each).
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Themes are variously repeated and combined, for humorous effect. For instance, there are entries for both the probability that St. Louis will have a white Christmas (21%) and that it will not (79%). Also given is the 40% probability that a random Scrabble tile will contain a letter from the name "Steph Curry".
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There are 80 items in the list, the last two of which devolve into absurdity - perhaps from the stress of preparing the other 78 entries.
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The list may be an attempt to better understand probabilistic election forecasts for the {{w|2020 United States presidential election}}, which was four days away at the time this comic was published and had also been alluded to in [[2370: Prediction]] and [[2371: Election Screen Time]]. Statistician and {{w|psephologist}} {{w|Nate Silver}} is referenced in one of the list items. On the date this cartoon was published, Nate Silver's website FiveThirtyEight.com was publishing forecast probabilities of Donald Trump and Joe Biden winning the US Presidential election. [[https://projects.fivethirtyeight.com/2020-election-forecast/]]. On 31 October 2020, the forecast described the chances of Donald Trump winning as "roughly the same as the chance that it’s raining in downtown Los Angeles. It does rain there. (Downtown L.A. has about 36 rainy days per year, or about a 1-in-10 shot of a rainy day.)" A day previously, when the chances were 12%, the website had also described Trump's chances of winning as "slightly less than a six sided die rolling a 1".
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The probabilities are calculated from [https://xkcd.com/2379/sources/ these sources], as mentioned in the bottom left corner.
  
 
The title text refers to the song "{{w|Call Me Maybe}}" by {{w|Carly Rae Jepsen}} (cited twice in the list). "MAYBE" is emphasized, perhaps because the probability of getting her phone number correct, as in the last item in the list, is very low. The capitalization could also be a reference to Scrabble tiles, as was previously mentioned in association with Carly Rae Jepsen.
 
The title text refers to the song "{{w|Call Me Maybe}}" by {{w|Carly Rae Jepsen}} (cited twice in the list). "MAYBE" is emphasized, perhaps because the probability of getting her phone number correct, as in the last item in the list, is very low. The capitalization could also be a reference to Scrabble tiles, as was previously mentioned in association with Carly Rae Jepsen.
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| rowspan="2" | 0.5%
 
| rowspan="2" | 0.5%
 
| An {{w|NBA}} team down by 30 at halftime wins
 
| An {{w|NBA}} team down by 30 at halftime wins
| This calculation, along with all related ones, uses the source [http://stats.inpredictable.com/nba/wpCalc.php NBA Win Probability Calculator]. Entering Q2, 0:00, and -30 into the calculator yields 0.6% .
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| This calculation, along with all related ones, use the source NBA Win Probability Calculator. Entering Q2, 0:00, and -30 into the calculator yields 0.6% .
 
|-
 
|-
 
| You get 4 M&Ms and they're all brown or yellow
 
| You get 4 M&Ms and they're all brown or yellow
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|-
 
|-
 
| {{w|LeBron James}} guesses your birthday, if each guess costs one free throw and he loses if he misses
 
| {{w|LeBron James}} guesses your birthday, if each guess costs one free throw and he loses if he misses
| LeBron James' free-throw odds are ~73% . The odds of him winning on the first round are 1/365, for the second (364/365)(1/364)(0.73), for the third (363/365)(1/363)(0.73)<sup>2</sup>... Summing all of these from 1 to 365 gives us his total odds of winning at any point in the game are ≈ 1.015% .
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| LeBron James' free-throw odds are ~73% . The odds of him winning on the first round are 1/365, for the second (1/364)(0.73), for the third (1/363)(0.73)<sup>2</sup>... Summing all of these from 1 to 365 gives us his total odds of winning at any point in the game are ≈ 1.022% .
 
|-
 
|-
 
| rowspan="2" | 1.5%
 
| rowspan="2" | 1.5%
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|-
 
|-
 
| You share a birthday with a {{w|Backstreet Boys|Backstreet Boy}}
 
| You share a birthday with a {{w|Backstreet Boys|Backstreet Boy}}
|Each of the five Backstreet Boys has a different birthday, so the odds that you share a birthday with one is 5/365 ≈ 1.3% .
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|Each of the five Backstreet Boys has a different birthday, so the odds that you share a birthday with one is 5/365.25 ≈ 1.3% .
 
|-
 
|-
 
| 2%
 
| 2%
 
| You guess someone's card on the first try
 
| You guess someone's card on the first try
| There are 52 cards in a normal deck of cards (excluding jokers), so the probability is 1/52, which is approximately 1.9%.
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| There are 52 cards in a normal deck of cards (excluding jokers), so the probability is 1/52, which is approximately 0.019 (1.9%).
 
|-
 
|-
 
| rowspan="2"| 3%
 
| rowspan="2"| 3%
 
| You guess 5 coin tosses and get them all right
 
| You guess 5 coin tosses and get them all right
| The chance of correctly predicting a coin toss is 0.5, or 50%. The chance of predicting 5 in a row is 0.5<sup>5</sup>, or 3.125%.
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| The chance of correctly predicting a coin toss is 0.5. The chance of predicting 5 in a row is 0.5<sup>5</sup>, or 3.125%.
 
|-
 
|-
 
| Steph Curry wins that birthday free throw game
 
| Steph Curry wins that birthday free throw game
| Swap out 0.73 for 0.91 in the above calculations to find Steph Curry's odds of winning. This sum yields ~3.04% .
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| Swap out 0.73 for 0.91 in the above calculations to find Steph Curry's odds of winning. This sum yields ~3.13% .
 
|-
 
|-
 
| rowspan="3"| 4%
 
| rowspan="3"| 4%
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|-
 
|-
 
| You share a birthday with two {{w|US Senator}}s
 
| You share a birthday with two {{w|US Senator}}s
| At the time this comic was published, 15 days were birthdays for more than one Senator, and 15/365 ≈ 4%.<ref>Rand Paul and John Thune - January 7<br/>
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| At the time this comic was published, 15 days were birthdays for more than one Senator, and 15/365.25 ≈ 4%.<ref>Rand Paul and John Thune - January 7<br/>
 
Chris Van Hollen and Roy Blunt - January 10<br/>
 
Chris Van Hollen and Roy Blunt - January 10<br/>
 
Tina Smith and James Lankford - March 4<br/>
 
Tina Smith and James Lankford - March 4<br/>
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|-
 
|-
 
| You roll a natural 20
 
| You roll a natural 20
| A natural 20 indicates a critical hit in the {{w|Dungeons & Dragons}} role playing game. "Natural" means that it is the number showing when rolling a d20 (a 20-sided die), as opposed to an overall total of 20 when counting the die roll plus modifiers. There are twenty sides to a d20 die, so 1/20 = 0.05 = 5% .
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| A natural 20 indicates a critical hit in the {{w|Dungeons & Dragons}} role playing game. "Natural" means that it is the number showing when rolling a d20 (a 20-sided die), as opposed to an overall total of 20 when counting the die roll plus modifiers. There are twenty sides to a d20 die. 1/20 = 0.05 = 5%
 
|-
 
|-
 
| 6%
 
| 6%
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| 7%
 
| 7%
 
| LeBron James gets two free throws and misses both
 
| LeBron James gets two free throws and misses both
| James' career free throw percentage is 73%, so the probability of a miss is 0.27, or 27%. The probability of 2 misses is (0.27)<sup>2</sup>, which is about 7%.
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| James' career free throw percentage is 73%, so the probability of a miss is 27%. The probability of 2 misses is (27%)<sup>2</sup>, which is about 7%.
 
|-
 
|-
 
| 8%
 
| 8%
 
| You correctly guess someone's card given 4 tries
 
| You correctly guess someone's card given 4 tries
| Assuming you guess four different cards, 4/52 = 0.0769 ≈ 8% . Assuming that you guess the same card, 1 - (51/52)(50/51)(49/50)(48/49) ≈ 7.7%.
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| Assuming you guess four different cards, 4/52 = 0.0769 ≈ 8% .
 
|-
 
|-
 
| 9%
 
| 9%
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| rowspan="2"|10%
 
| rowspan="2"|10%
 
| You draw 5 cards and get the Ace of Spades
 
| You draw 5 cards and get the Ace of Spades
| There are 52 cards in a normal deck of cards (excluding jokers), and the Ace of Spades is one of them.{{Citation needed}} The chances of getting the card is 1 - 51/52 * 50/51 * 49/50 * 48/49 * 47/48 which is approximately 0.096, which rounds to the given 0.1 or 10%.
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| There are 52 cards in a normal deck of cards (excluding jokers), and the Ace of Spades is one of them. The chances of getting the card is 1 - 51/52 * 50/51 * 49/50 * 48/49 * 47/48 which is approximately 0.096, which rounds to the given 0.1 or 10%. <!-- make into math format -->
 
|-
 
|-
 
| There's a {{w|Moment magnitude scale|magnitude}} 8+ earthquake in the next month
 
| There's a {{w|Moment magnitude scale|magnitude}} 8+ earthquake in the next month
| Note that, unlike other earthquake examples, this does not specify where the earthquake occurs. From 1905 to 2021, there have been 98 earthquakes magnitude 8+ recorded around the world.
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| Note that, unlike other earthquake examples, this does not specify where the earthquake occurs.
 
|-
 
|-
 
| 11%
 
| 11%
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| rowspan="3"| 33%
 
| rowspan="3"| 33%
 
| A randomly chosen Star Wars movie (Episodes I-IX) has "of the" in the title
 
| A randomly chosen Star Wars movie (Episodes I-IX) has "of the" in the title
| The movies that have "of the" in their titles are Episodes II (Attack of the Clones), III (Revenge of the Sith), and VI (Return of the Jedi). This gives the odds of 3/9 ≈ 33%.
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| Episodes II (Attack of the Clones), III (Revenge of the Sith), and VI (Return of the Jedi) are the movies. This gives the odds of 3/9 ≈ 33% .
 
|-
 
|-
 
| You win the Monty Hall sports car by picking a door and refusing to switch
 
| You win the Monty Hall sports car by picking a door and refusing to switch
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| 50%
 
| 50%
 
| You get heads in a coin toss
 
| You get heads in a coin toss
| There are two options in a coin toss, heads or tails, so the odds of getting heads is 50% (1/2).  Uncharacteristically for Randall, this ignores the minuscule possibility that the coin might land on its edge.
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| There are two options in a coin toss, heads or tails, so the odds of getting heads is 50% (1/2).  Uncharacteristically for Randall, this ignores the very fractional possibility the coin might land on it's edge.
 
|-
 
|-
 
| 53%
 
| 53%
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| This probability combines two events.
 
| This probability combines two events.
  
First, the probability that a random 10-digit telephone number belongs to Obama is 1/10<sup>10</sup>. This ignores potential complications from Obama owning multiple phones or failing to answer personally (perhaps using an assistant or answering machine). Additionally, it assumes numbers are dialed at random rather than making more intelligent guesses, such as using likely addresses to guess area codes.
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First, the probability that a random 10-digit telephone number belongs to Obama is 1/10<sup>10</sup>. This ignores potential complications from Obama owning multiple phones or failing to answer personally (perhaps using an assistant or answering machine). Additionally, it assumes numbers are dialed at random rather than making more intelligent guesses like using likely addresses to guess area codes.
  
 
Second, the probability of a magnitude 8 California quake is given in a previous entry as 0.2% per year. Although the time window for an earthquake to "just occur" is not given, a 15 minute window corresponds (within rounding error) to the total probability given.
 
Second, the probability of a magnitude 8 California quake is given in a previous entry as 0.2% per year. Although the time window for an earthquake to "just occur" is not given, a 15 minute window corresponds (within rounding error) to the total probability given.
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| 0.00000001%
 
| 0.00000001%
 
| You add "Hang on, this is big — I'm going to loop in Carly Rae Jepsen", dial another random 10-digit number, and she picks up
 
| You add "Hang on, this is big — I'm going to loop in Carly Rae Jepsen", dial another random 10-digit number, and she picks up
| Carly Rae Jepsen is a Canadian singer. As Canada uses the 10-digit {{w|North American Numbering Plan}}, the odds of a random number being hers would be (1/10)<sup>10</sup> = 0.00000001%. Like Obama, this ignores the possibility that she has multiple phones or that she doesn't answer personally.
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| Carly Rae Jepsen is a Canadian singer. As Canada uses the 10-digit {{w|North American Numbering Plan}}, the odds of a random number being hers would be 1 - (1/10)<sup>10</sup> = 0.00000001%. Like Obama, this ignores the possibility that she has multiple phones or that she doesn't answer personally.
 
|}
 
|}
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===References===
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{{#tag:references}}
  
 
==Trivia==
 
==Trivia==
* In the original comic, "outside" in the 88% probability section is spelled incorrectly as "outide". In addition, the 39% section had "two free throw" instead of "throws".
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In the original comic, "outside" in the 88% probability section is spelled incorrectly as "outide". In addition, the 39% section had "two free throw" instead of "throws".
 
 
* The (seemingly unimportant) odds of LeBron James' versus Stephen Curry's free throws and names in Scrabble refer to [[2002: LeBron James and Stephen Curry]].
 
  
* If you were to act out all the M&M-related probabilities, you would draw (or flip) 32 M&Ms in total. In addition, you would draw 8 Scrabble tiles in total for each Scrabble-related probability.
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The (seemingly unimportant) odds of LeBron James' versus Stephen Curry's free throws and names in Scrabble refer to [[2002: LeBron James and Stephen Curry]].
  
 
==Transcript==
 
==Transcript==
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0.00000001% You add "Hang on, this is big — I'm going to loop in Carly Rae Jepsen", dial another random 10-digit number, and she picks up
 
0.00000001% You add "Hang on, this is big — I'm going to loop in Carly Rae Jepsen", dial another random 10-digit number, and she picks up
  
[In light grey color and in the lower left corner there is text.]
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[In light grey colour and in the lower left corner there is text.]
  
 
Sources: https://xkcd.com/2379/sources/
 
Sources: https://xkcd.com/2379/sources/
 
==References==
 
<references/>
 
  
 
{{comic discussion}}
 
{{comic discussion}}

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