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im chloe

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brazilia:


الفنان ” Bryan Lewis Saunders “
 ينقل تجربته  برسمه لمجموعة من الرسوم التي تمثّله بعد تعاطيه انواع مختلفة من المخدرات . 
Bryan Lewis Saunders is an artist from Johnson City, Tennessee who’s  doing a series of self portraits under the influence of various drugs.
brazilia:


الفنان ” Bryan Lewis Saunders “
 ينقل تجربته  برسمه لمجموعة من الرسوم التي تمثّله بعد تعاطيه انواع مختلفة من المخدرات . 
Bryan Lewis Saunders is an artist from Johnson City, Tennessee who’s  doing a series of self portraits under the influence of various drugs.
brazilia:


الفنان ” Bryan Lewis Saunders “
 ينقل تجربته  برسمه لمجموعة من الرسوم التي تمثّله بعد تعاطيه انواع مختلفة من المخدرات . 
Bryan Lewis Saunders is an artist from Johnson City, Tennessee who’s  doing a series of self portraits under the influence of various drugs.
brazilia:


الفنان ” Bryan Lewis Saunders “
 ينقل تجربته  برسمه لمجموعة من الرسوم التي تمثّله بعد تعاطيه انواع مختلفة من المخدرات . 
Bryan Lewis Saunders is an artist from Johnson City, Tennessee who’s  doing a series of self portraits under the influence of various drugs.
brazilia:


الفنان ” Bryan Lewis Saunders “
 ينقل تجربته  برسمه لمجموعة من الرسوم التي تمثّله بعد تعاطيه انواع مختلفة من المخدرات . 
Bryan Lewis Saunders is an artist from Johnson City, Tennessee who’s  doing a series of self portraits under the influence of various drugs.
brazilia:


الفنان ” Bryan Lewis Saunders “
 ينقل تجربته  برسمه لمجموعة من الرسوم التي تمثّله بعد تعاطيه انواع مختلفة من المخدرات . 
Bryan Lewis Saunders is an artist from Johnson City, Tennessee who’s  doing a series of self portraits under the influence of various drugs.
brazilia:


الفنان ” Bryan Lewis Saunders “
 ينقل تجربته  برسمه لمجموعة من الرسوم التي تمثّله بعد تعاطيه انواع مختلفة من المخدرات . 
Bryan Lewis Saunders is an artist from Johnson City, Tennessee who’s  doing a series of self portraits under the influence of various drugs.
brazilia:


الفنان ” Bryan Lewis Saunders “
 ينقل تجربته  برسمه لمجموعة من الرسوم التي تمثّله بعد تعاطيه انواع مختلفة من المخدرات . 
Bryan Lewis Saunders is an artist from Johnson City, Tennessee who’s  doing a series of self portraits under the influence of various drugs.
brazilia:


الفنان ” Bryan Lewis Saunders “
 ينقل تجربته  برسمه لمجموعة من الرسوم التي تمثّله بعد تعاطيه انواع مختلفة من المخدرات . 
Bryan Lewis Saunders is an artist from Johnson City, Tennessee who’s  doing a series of self portraits under the influence of various drugs.
brazilia:


الفنان ” Bryan Lewis Saunders “
 ينقل تجربته  برسمه لمجموعة من الرسوم التي تمثّله بعد تعاطيه انواع مختلفة من المخدرات . 
Bryan Lewis Saunders is an artist from Johnson City, Tennessee who’s  doing a series of self portraits under the influence of various drugs.
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arr0wz:

Where can I find this or buy this ugh
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human-s0uls:

mom driving her kid to warped tour
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sometimessassystoner:

transgirltumbling:

s-uicida-ll:

satanstruemistress:

grimmzai:

un-original-fan:

peppermint3y3candy:

oh hell no

fucking nope.

FUCK THAT.

I think this movie traumatized a generation.

*goosebumps* just..no

I’m not playing …

One Christmas when I was 7 my parents bought this for me and my little sister. On my mom’s first move she got ‘kidnapped by monkeys’ and she went to the bathroom and started screaming and then my dad told me and my younger sister to run away or they’d get us too.
They found us half way down the block with our jackets on upside down and laughed at our tears.
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nubbsgalore:

photos of sakurajima, the most active volcano in japan, by (click pic) takehito miyatake (previously featured) and martin rietze. volcanic storms can rival the intensity of massive supercell thunderstorms, but the source of the charge responsible for this phenomenon remains hotly debated. 
in the kind of storm clouds that generate conventional lightning, ice particles and soft hail collide, building up positive and negative charges, respectively. they separate into layers, and the charge builds up until the electric field is high enough to trigger lightning. 
but the specific mechanism by which particles of differing charges are separated in the ash cloud is still unknown. lightning has been observed between the eruption plume and the volcano right at the start of an eruption, suggesting that there are processes that occur inside the volcano to lead to charge separation.  
volcanic lightning could yield clues about the earth’s geological past, and could answer questions about the beginning of life on our planet. volcanic lightning could have been the essential spark that converted water, hydrogen, ammonia, and methane molecules present on a primeval earth into amino acids, the building blocks of life. 
(see also: previous volcanology posts)
nubbsgalore:

photos of sakurajima, the most active volcano in japan, by (click pic) takehito miyatake (previously featured) and martin rietze. volcanic storms can rival the intensity of massive supercell thunderstorms, but the source of the charge responsible for this phenomenon remains hotly debated. 
in the kind of storm clouds that generate conventional lightning, ice particles and soft hail collide, building up positive and negative charges, respectively. they separate into layers, and the charge builds up until the electric field is high enough to trigger lightning. 
but the specific mechanism by which particles of differing charges are separated in the ash cloud is still unknown. lightning has been observed between the eruption plume and the volcano right at the start of an eruption, suggesting that there are processes that occur inside the volcano to lead to charge separation.  
volcanic lightning could yield clues about the earth’s geological past, and could answer questions about the beginning of life on our planet. volcanic lightning could have been the essential spark that converted water, hydrogen, ammonia, and methane molecules present on a primeval earth into amino acids, the building blocks of life. 
(see also: previous volcanology posts)
nubbsgalore:

photos of sakurajima, the most active volcano in japan, by (click pic) takehito miyatake (previously featured) and martin rietze. volcanic storms can rival the intensity of massive supercell thunderstorms, but the source of the charge responsible for this phenomenon remains hotly debated. 
in the kind of storm clouds that generate conventional lightning, ice particles and soft hail collide, building up positive and negative charges, respectively. they separate into layers, and the charge builds up until the electric field is high enough to trigger lightning. 
but the specific mechanism by which particles of differing charges are separated in the ash cloud is still unknown. lightning has been observed between the eruption plume and the volcano right at the start of an eruption, suggesting that there are processes that occur inside the volcano to lead to charge separation.  
volcanic lightning could yield clues about the earth’s geological past, and could answer questions about the beginning of life on our planet. volcanic lightning could have been the essential spark that converted water, hydrogen, ammonia, and methane molecules present on a primeval earth into amino acids, the building blocks of life. 
(see also: previous volcanology posts)
nubbsgalore:

photos of sakurajima, the most active volcano in japan, by (click pic) takehito miyatake (previously featured) and martin rietze. volcanic storms can rival the intensity of massive supercell thunderstorms, but the source of the charge responsible for this phenomenon remains hotly debated. 
in the kind of storm clouds that generate conventional lightning, ice particles and soft hail collide, building up positive and negative charges, respectively. they separate into layers, and the charge builds up until the electric field is high enough to trigger lightning. 
but the specific mechanism by which particles of differing charges are separated in the ash cloud is still unknown. lightning has been observed between the eruption plume and the volcano right at the start of an eruption, suggesting that there are processes that occur inside the volcano to lead to charge separation.  
volcanic lightning could yield clues about the earth’s geological past, and could answer questions about the beginning of life on our planet. volcanic lightning could have been the essential spark that converted water, hydrogen, ammonia, and methane molecules present on a primeval earth into amino acids, the building blocks of life. 
(see also: previous volcanology posts)
nubbsgalore:

photos of sakurajima, the most active volcano in japan, by (click pic) takehito miyatake (previously featured) and martin rietze. volcanic storms can rival the intensity of massive supercell thunderstorms, but the source of the charge responsible for this phenomenon remains hotly debated. 
in the kind of storm clouds that generate conventional lightning, ice particles and soft hail collide, building up positive and negative charges, respectively. they separate into layers, and the charge builds up until the electric field is high enough to trigger lightning. 
but the specific mechanism by which particles of differing charges are separated in the ash cloud is still unknown. lightning has been observed between the eruption plume and the volcano right at the start of an eruption, suggesting that there are processes that occur inside the volcano to lead to charge separation.  
volcanic lightning could yield clues about the earth’s geological past, and could answer questions about the beginning of life on our planet. volcanic lightning could have been the essential spark that converted water, hydrogen, ammonia, and methane molecules present on a primeval earth into amino acids, the building blocks of life. 
(see also: previous volcanology posts)
nubbsgalore:

photos of sakurajima, the most active volcano in japan, by (click pic) takehito miyatake (previously featured) and martin rietze. volcanic storms can rival the intensity of massive supercell thunderstorms, but the source of the charge responsible for this phenomenon remains hotly debated. 
in the kind of storm clouds that generate conventional lightning, ice particles and soft hail collide, building up positive and negative charges, respectively. they separate into layers, and the charge builds up until the electric field is high enough to trigger lightning. 
but the specific mechanism by which particles of differing charges are separated in the ash cloud is still unknown. lightning has been observed between the eruption plume and the volcano right at the start of an eruption, suggesting that there are processes that occur inside the volcano to lead to charge separation.  
volcanic lightning could yield clues about the earth’s geological past, and could answer questions about the beginning of life on our planet. volcanic lightning could have been the essential spark that converted water, hydrogen, ammonia, and methane molecules present on a primeval earth into amino acids, the building blocks of life. 
(see also: previous volcanology posts)
nubbsgalore:

photos of sakurajima, the most active volcano in japan, by (click pic) takehito miyatake (previously featured) and martin rietze. volcanic storms can rival the intensity of massive supercell thunderstorms, but the source of the charge responsible for this phenomenon remains hotly debated. 
in the kind of storm clouds that generate conventional lightning, ice particles and soft hail collide, building up positive and negative charges, respectively. they separate into layers, and the charge builds up until the electric field is high enough to trigger lightning. 
but the specific mechanism by which particles of differing charges are separated in the ash cloud is still unknown. lightning has been observed between the eruption plume and the volcano right at the start of an eruption, suggesting that there are processes that occur inside the volcano to lead to charge separation.  
volcanic lightning could yield clues about the earth’s geological past, and could answer questions about the beginning of life on our planet. volcanic lightning could have been the essential spark that converted water, hydrogen, ammonia, and methane molecules present on a primeval earth into amino acids, the building blocks of life. 
(see also: previous volcanology posts)
nubbsgalore:

photos of sakurajima, the most active volcano in japan, by (click pic) takehito miyatake (previously featured) and martin rietze. volcanic storms can rival the intensity of massive supercell thunderstorms, but the source of the charge responsible for this phenomenon remains hotly debated. 
in the kind of storm clouds that generate conventional lightning, ice particles and soft hail collide, building up positive and negative charges, respectively. they separate into layers, and the charge builds up until the electric field is high enough to trigger lightning. 
but the specific mechanism by which particles of differing charges are separated in the ash cloud is still unknown. lightning has been observed between the eruption plume and the volcano right at the start of an eruption, suggesting that there are processes that occur inside the volcano to lead to charge separation.  
volcanic lightning could yield clues about the earth’s geological past, and could answer questions about the beginning of life on our planet. volcanic lightning could have been the essential spark that converted water, hydrogen, ammonia, and methane molecules present on a primeval earth into amino acids, the building blocks of life. 
(see also: previous volcanology posts)
nubbsgalore:

photos of sakurajima, the most active volcano in japan, by (click pic) takehito miyatake (previously featured) and martin rietze. volcanic storms can rival the intensity of massive supercell thunderstorms, but the source of the charge responsible for this phenomenon remains hotly debated. 
in the kind of storm clouds that generate conventional lightning, ice particles and soft hail collide, building up positive and negative charges, respectively. they separate into layers, and the charge builds up until the electric field is high enough to trigger lightning. 
but the specific mechanism by which particles of differing charges are separated in the ash cloud is still unknown. lightning has been observed between the eruption plume and the volcano right at the start of an eruption, suggesting that there are processes that occur inside the volcano to lead to charge separation.  
volcanic lightning could yield clues about the earth’s geological past, and could answer questions about the beginning of life on our planet. volcanic lightning could have been the essential spark that converted water, hydrogen, ammonia, and methane molecules present on a primeval earth into amino acids, the building blocks of life. 
(see also: previous volcanology posts)
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lingvonil:

fighteous:

Now that’s how you do a broken gif.

THIS IS FUCKING DEMONIC
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thefrogman:

[reddit] [h/t: pleatedjeans]
thefrogman:

[reddit] [h/t: pleatedjeans]
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rlyhigh:

saevuswinds:

vardaesque:

you don’t understand i would sell my firstborn to know how this story started

Well it all started when Mrs. Hayfer wanted me to babysit her dumb house. When I got the keys, I sat them on top of this pie that I found on the counter. I knew it was going to be given to the family for desert if I didn’t eat it soon, so I was going to plan to eat it in my teacher’s house and dump all the crumbs on her bed. So it’s a win-win, right? Besides, she wouldn’t find out about the crumbs until after I was paid, and this teacher hates me anyway. Then, I got distracted when this hot cheerleader calls me, asking about what movie I’d recommend, but before I could answer, I realize that my mom would be there any second to serve dinner, and there was no way I was sharing that pie. So I bust out of there with the pie and the keys, and the moment I get in the house, I start chowing down on the pie with my bare hands, trying to eat this thing before anyone knows I took it, right? Well, since the pie crust was dry, I chugged a 2-liter bottle of soda whenever my throat would get dry and eventually, I really needed “to go.” Only when I went to flush, the water wouldn’t stop flowing and there was no plunger to be found. Usually I’d just shrug and say it was Josh’s fault or something, but let’s get real here, Mrs. Hayfer would’ve blamed me about her toilet overflowing if I was 30 states away. So I jammed my foot in there, hoping it’d make the toilet stop flushing. Then my phone rings, and I knew it was my mom, asking where her pie went, and because Meghan decided it’d be a great idea to make my ring tone a bunch of cats meowing, Mrs. Hayfer’s dog, Tiberius starts freaking out, bashing into the door over and over again. Now anyone who knows this dog knows that this dog will happily eat anything, and that includes the pie, and probably myself.  So my foot’s totally stuck in there right, I’m freaking out, the dog’s having a seizure and I still got half a pie left. 

i feel it necessary to reblog since i just read that whole thing
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mothbug:

stayfrostystayfrosty:

mothbug:

✿ primadonna girl ✿
✿ all i ever wanted was the world ✿

Is that bow taped onto that snake
I’m pretty sure that’s kind of a fuckin’ bad thing to do

u fuckin serious m8 it was literally a pencil eraser sized boop of double sided tape gently laid on her head so the bow would stay on 
i promise you my twelve foot long, 30-pound burmese python survived a boop of tape to the noggin
mothbug:

stayfrostystayfrosty:

mothbug:

✿ primadonna girl ✿
✿ all i ever wanted was the world ✿

Is that bow taped onto that snake
I’m pretty sure that’s kind of a fuckin’ bad thing to do

u fuckin serious m8 it was literally a pencil eraser sized boop of double sided tape gently laid on her head so the bow would stay on 
i promise you my twelve foot long, 30-pound burmese python survived a boop of tape to the noggin
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