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Guru Tutor
Добавлен 22 дек 2016
Mathematics, science, investing ... whatever.
Видео
Finding the Equation of a Perpendicular Bisector
Просмотров 118Год назад
How to find the equation of a perpendicular bisector given two points.
Law of Cosine Missing Angle Formula EXAMPLE
Просмотров 72Год назад
An example of how to find a missing angle using the Cosine Rule. Link to Trigonometry playlist (Algebra 2): ruclips.net/p/PL6ZxDcgthxgIyuLfulldqvVWqU695ye0v
Law of Cosine Missing Angle Formula DERIVATION
Просмотров 44Год назад
Showing where the Cosine Rule for finding a missing angle comes from. Link to Trigonometry playlist (Algebra 2): ruclips.net/p/PL6ZxDcgthxgIyuLfulldqvVWqU695ye0v
Area of a Triangle Using Trigonometry
Просмотров 50Год назад
Finding the area of a triangle using trigonometry. Usually done with the Sine Rule. Link to Trigonometry playlist (Algebra 2): ruclips.net/p/PL6ZxDcgthxgIyuLfulldqvVWqU695ye0v
Law of Sines Missing Angle Formula
Просмотров 145Год назад
Finding a missing angle in a non-right triangle. Link to Trigonometry playlist (Algebra 2): ruclips.net/p/PL6ZxDcgthxgIyuLfulldqvVWqU695ye0v
Law of Sines Missing Side Formula EXAMPLE
Просмотров 91Год назад
Using the Law of Sines to find a missing side of a non-right angle triangle. Link to Trigonometry playlist (Algebra 2): ruclips.net/p/PL6ZxDcgthxgIyuLfulldqvVWqU695ye0v
Law of Sines Missing Side Formula DERIVATION
Просмотров 130Год назад
Derivation of the version of Law of Sines Formula for finding an unknown side. Link to Trigonometry playlist (Algebra 2): ruclips.net/p/PL6ZxDcgthxgIyuLfulldqvVWqU695ye0v
Graphing the Function y = 2 cos(3x)
Просмотров 3,5 тыс.2 года назад
How to graph sine and cosine functions of the form y = a sin(bx) and y = a cos(bx). Link to Trigonometry playlist (Algebra 2): ruclips.net/p/PL6ZxDcgthxgIyuLfulldqvVWqU695ye0v
Graphing the Function y = tan(x)
Просмотров 9562 года назад
How to graph the tangent function and a discussion of its features. Link to Trigonometry playlist (Algebra 2): ruclips.net/p/PL6ZxDcgthxgIyuLfulldqvVWqU695ye0v
Graphing the Function y = sin(x)
Просмотров 1,2 тыс.2 года назад
How to graph the sine function and a discussion of some of its features. Link to Trigonometry playlist (Algebra 2): ruclips.net/p/PL6ZxDcgthxgIyuLfulldqvVWqU695ye0v
Basic Inverse Trigonometry Finding Angles
Просмотров 2122 года назад
Calculating the size of a missing angle using trigonometry in degrees and radians. Link to Trigonometry playlist (Algebra 2): ruclips.net/p/PL6ZxDcgthxgIyuLfulldqvVWqU695ye0v
sin, cos and tan of any angle (Degrees AND Radians)
Просмотров 4402 года назад
Calculating exact values of sin, cos and tan using ASTC. Link to Trigonometry playlist (Algebra 2): ruclips.net/p/PL6ZxDcgthxgIyuLfulldqvVWqU695ye0v
ASTC Explained
Просмотров 2,6 тыс.2 года назад
Understanding where sin, cos and tan ratios are positive and negative around the unit circle. Link to Trigonometry playlist (Algebra 2): ruclips.net/p/PL6ZxDcgthxgIyuLfulldqvVWqU695ye0v
sin, cos and tan of 0°, 90°, 180°, 270°, ...
Просмотров 7 тыс.2 года назад
Calculating sin, cos and tan of angles bordering the quadrants. Link to Trigonometry playlist (Algebra 2): ruclips.net/p/PL6ZxDcgthxgIyuLfulldqvVWqU695ye0v
Trigonometric Ratios of 30°, 45° and 60° Quiz (Radians AND Degrees)
Просмотров 1082 года назад
Trigonometric Ratios of 30°, 45° and 60° Quiz (Radians AND Degrees)
Converting Between Radians and Degrees
Просмотров 1112 года назад
Converting Between Radians and Degrees
Trigonometric Ratios of 30°, 45° and 60° Quiz (Degrees)
Просмотров 5432 года назад
Trigonometric Ratios of 30°, 45° and 60° Quiz (Degrees)
Trigonometric Ratios of Special Angles Example
Просмотров 3,1 тыс.2 года назад
Trigonometric Ratios of Special Angles Example
Trigonometric Ratios of Special Angles 30°, 45° and 60°
Просмотров 21 тыс.2 года назад
Trigonometric Ratios of Special Angles 30°, 45° and 60°
Introduction to the Reciprocal Ratios csc, sec and cot
Просмотров 2002 года назад
Introduction to the Reciprocal Ratios csc, sec and cot
Solving Right Triangles with SOH-CAH-TOA
Просмотров 582 года назад
Solving Right Triangles with SOH-CAH-TOA
The Trigonometric Ratios sin, cos and tan
Просмотров 2162 года назад
The Trigonometric Ratios sin, cos and tan
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love ❤de from India
Thank you. I searched all over internet but couldn't find how these values derived. It cleared my almost doubts. This is marvellous.🎉
Extremely well done development!
Great. Nice explanation 🎉
Really helpful was never taught the flipping of gradient
You help me a lot sir , may Yahweh bless you
THANK YOU THANK YOU THANKYOUU
Goated video
Hey, today I got the royal flush plus de 9, which was even more lucky than a normal royal flush(9,10,J,Q,K,A) could you help me determine the probability of getting this combination ? On a normal texas hold’em board of 7 cards. Thank you by advance
A Royal Flush IS a straight flush. It’s the highest straight flush.
0594 Parisian Run
Keep using naught
This guy kicks ass
99801 Shields Place
my god be with me at all my work
good like
0390 Marlin Junction
I don’t get why it wouldn’t involve some series. Or did you do that already on the denominator? 32/52 then (x(dunno what this should be)/n-1)! +_ x/n-2 etc
23006 Stiedemann Views
Hit one tonight! Playing with a bunch of 70 year old veterans, who play twice a month. & the 27 year old guy hit the coveted Royal Flush. No one had ever seen one before. I blacked out. My memory is gone from the time i rivered the 10 of spades to the time i called All In. My brain was going bezerk, while trying to keep a straight face. Such a cool moment.
555 Brandon Shore
77247 Corkery Drive
Very good presentation and explanation. I dont understand why this video has such low views. Thumbs up. Thanks.
Thanks
Wow this man is a good teacher 🎉🎉
This appears to be a high school math class. I stumbled upon it because I was looking for some numbers for my research. Great job on the series! These are some good examples to introduce probability as a subject. The actual math behind hitting a flush in poker is significantly more complicated. For example, suited hands have a significant "flush equity", which is the chance of hitting a flush with any two starting cards. The actual math of hitting the flush will be landing three cards of the same suit as your hand out of a 5 card draw. The math becomes even more complicated if you account for the other 5 players having any 2 remaining cards randomly.
This provrs how rigged online poker is
Thanks so much you have helped me alot
Waa are you a maths teacher
This is correct for only 10 J Q K A in this order What about J 10 Q K A and other combinations ? For this we multiply top by 5! We get 2/10 829 Which is ≈ 0,00018 => 0,018%
Thanks🙏 very much sir🎉
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I got 2 in a night playing a tournament in less than 2hrs…and there was a break in the 2hrs never had one before….
This is supercalifragilisticexpialidocious 🎉🎉
Great video, but this won't help you if you don't memorize the first quadrant radiant measures or if the angle is not a round number (like 29 degrees for example). Is there a way to find sin cos tan without a calculator?
Thank you sir
Played with my home club last night someone got a royal flush it was amazing
Nice explanation
I remember one probability problem I had to solve when I was in school. None of my colleagues soved it and I still don't know how to solve it. From a deck of 52 cards (13 ranks and 4 suits) a sample of 16 cards is extracted. What is the probability that, for at least one of the ranks, we get at least three of that rank? I remember I've tried to use the hypergeometric distribution and obtained a value larger than one, which of course is wrong. Any ideas?
could be difficult to make this calculation when you have 15 seconds at the poker table, but great work!
I searched so many videos and then at last, this legendary video came and I am honestly very thankful for you sir.
Why do we do 13 over 2 instead of 13 over 1 times 12 over 1?
Well done!
Does this include or exclude the possibility of a full house? Would you please explain why or why not, thank you.
Great work
How we can simple know
This is golden information
Thanks for sharing the work 🙂 🙏