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New Music Friday stream + comment party (May 1)


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Hey Exhale, I was thinking instead of doing individual threads for new songs that come out on Thursdays & Fridays... what if we had a thread dedicated to New Music Friday in its entirety each week.

If something huge drops, it'll get its own dedicated topic, but I've had a lot of people reach out cause they miss the NMF roundup I used to do. 

More importantly, this gives YOU the opportunity to share new music you've discovered this week.

I'll kick it off with a few gems that just dropped. I'll add more as they trickle in. 

Please add new ones in the comments!
 

Kehlani – “F&MU”

 

Camila Cabello featuring DaBaby and Gunna - "My Oh My" remix (song)


 

Dixie Chicks - "Julianna Calm Down" (song)

 

Brandy featuring Chance the Rapper (song)

 

HAIM - "I Know Alone" (music video) 

 

Halsey & Marshmello - "Be Kind" (song)

 

MAX - Missed Calls (feat. Hayley Kiyoko)

 

JoJo - good to know (album)

https://music.apple.com/us/album/good-to-know/1500962957

 

Drake - Dark Lane Demo Tapes (mixtape)

https://music.apple.com/nl/album/dark-lane-demo-tapes/1511049637?l=en

 

 

NMF.thumb.jpg.c3f1de4ae9de3cdf56ebe6e176192567.jpg

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5 minutes ago, Roxxy said:

What is that Pokie, it sounds like smart stuff. :embarrassney:

it's a group of algorithms in multivariate analysis and linear algebra where a matrix V is factorized into (usually) two matrices W and H, with the property that all three matrices have no negative elements. This non-negativity makes the resulting matrices easier to inspect. Also, in applications such as processing of audio spectrograms or muscular activity, non-negativity is inherent to the data being considered. Since the problem is not exactly solvable in general, it is commonly approximated numerically. :yaknow:

Spoiler

and it's also the first result if you google NMF :katyfrog:

 

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7 minutes ago, PokemonSpears said:

it's a group of algorithms in multivariate analysis and linear algebra where a matrix V is factorized into (usually) two matrices W and H, with the property that all three matrices have no negative elements. This non-negativity makes the resulting matrices easier to inspect. Also, in applications such as processing of audio spectrograms or muscular activity, non-negativity is inherent to the data being considered. Since the problem is not exactly solvable in general, it is commonly approximated numerically

:fakewow:

Surprisingly, you explained that really well, cause I think I kinda got it. :o Like, I don't get it but I get it. You know what i mean. :brit2016:

We love a smart and handsome King. When will their faves honestly. :kyliecry:

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  • Super Mods
40 minutes ago, PokemonSpears said:

it's a group of algorithms in multivariate analysis and linear algebra where a matrix V is factorized into (usually) two matrices W and H, with the property that all three matrices have no negative elements. This non-negativity makes the resulting matrices easier to inspect. Also, in applications such as processing of audio spectrograms or muscular activity, non-negativity is inherent to the data being considered. Since the problem is not exactly solvable in general, it is commonly approximated numerically. :yaknow:

  Reveal hidden contents

and it's also the first result if you google NMF :katyfrog:

 

Alright we get it, you’re smart and we’re not :rlynow:

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  • Leader
42 minutes ago, PokemonSpears said:

it's a group of algorithms in multivariate analysis and linear algebra where a matrix V is factorized into (usually) two matrices W and H, with the property that all three matrices have no negative elements. This non-negativity makes the resulting matrices easier to inspect. Also, in applications such as processing of audio spectrograms or muscular activity, non-negativity is inherent to the data being considered. Since the problem is not exactly solvable in general, it is commonly approximated numerically. :yaknow:

  Reveal hidden contents

and it's also the first result if you google NMF :katyfrog:

 

:mj: makes 

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1 hour ago, Roxxy said:

:fakewow:

Surprisingly, you explained that really well, cause I think I kinda got it. :o Like, I don't get it but I get it. You know what i mean. :brit2016:

We love a smart and handsome King. When will their faves honestly. :kyliecry:

 

1 hour ago, puppylo16 said:

Alright we get it, you’re smart and we’re not :rlynow:

 

1 hour ago, JordanMiller said:

:mj: makes 

I just copied what Wikipedia said and added that Britney emote to pretend I was explaining it myself :haha:

 

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2 minutes ago, PokemonSpears said:

I just copied what Wikipedia said and added that Britney emote to pretend I was explaining it myself 

Nope. :nonono:

This doesn't make sense with my fantasy. I'm not gonna ruin it. I believed that that was really you and i'm sticking to that. :bop:

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