@kerimurdock: #birthcontrolpatch

keri
keri
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Region: US
Friday 05 June 2026 06:25:21 GMT
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purpleprolifer
𝕬𝖇𝖎𝖌𝖆𝖎𝖑 :
I love my patch!! I wear it on my butt or thigh
2026-07-14 20:16:48
84
jaydexstevens
🅹🅰︎🆈🅳🅴 :
I love mine too, i also wear it on my arm.. loud and proud!!
2026-07-24 07:08:09
2
bended.templez
bended.templez :
I love my iud
2026-07-18 21:49:12
15
1z77a7
🤫 :
The patch made me so irritable and angry I had to switch to the shot😭 did anyone else experience this??
2026-07-17 02:32:59
11
the_cute_panda2
👑Queenbaby-101❤️ :
I have the one that goes into ur arm
2026-07-21 00:41:42
2
briial0ve
𝒿 ♡ :
I think I’ll do the patch instead of the shot now. What are the cons for you?
2026-06-11 13:20:10
6
greeneyedgremlinn
Ava🌚 :
bro i’m on it but when i know i wanna wear something like a tank top i put it on my stomach but then it comes off😊 maybe i should just not gaf
2026-06-15 14:57:16
6
daniellemakesstuff
Danielle Clay :
I’d put mine on the upper part of my butt
2026-07-17 01:33:39
5
fluffysnow77
snow_mountain :
I bled for weeks with the patch 😭
2026-07-17 20:54:36
1
s00ux
miri ✧˖°𖧵ꕤ𖧵 :
I recently started the patch and was wondering if this happens to you or anyone who uses it, but is it normal that after a day or two of replacing your patch, you get very itchy?
2026-07-16 09:20:37
5
sunflowerfeelz56
🌻 :
I’m about to draw on mine with sharpie, google said I could and I’m too creative to have a plain patch
2026-07-03 19:51:10
3
000dmh
000dmh :
Wait is this one hormonal?
2026-06-05 21:15:43
2
may.mph
May MPH Music Creator🎶🎹🎸🖥️ :
Every picture 😂
2026-07-11 14:38:07
1
may.mph
May MPH Music Creator🎶🎹🎸🖥️ :
😂 hahaha
2026-07-11 14:37:51
1
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A GravaStar (from gravitational vacuum condensate star) is a hypothetical ultra-compact cosmic object considered as a possible alternative to a black hole. The idea was proposed by Pavel Mazur and Emil Mottola in the early 2000s. Unlike a typical black hole, a gravistar in the original model lacks a singularity and a true event horizon. It is assumed that within such an object there is a region of vacuum energy with negative pressure, approximately described by the relation (p = -\rho ). This inner region resembles de Sitter space and, due to its properties, prevents further gravitational collapse. Around it is an extremely thin and dense shell that separates the inner vacuum from outer space. From the outside, a gravistar may be virtually indistinguishable from a black hole: its gravitational field can be so strong that it would be extremely difficult for a distant observer to distinguish between the two objects. The central idea of the theory is that during the collapse of a massive star, instead of forming a singularity, a phase transition can occur, followed by the formation of a vacuum core and shell, stabilizing the object and preventing it from becoming a classical black hole. Therefore, gravistars are particularly interesting in the context of problems related to singularities and the black hole information paradox. Theoretically, it would be possible to distinguish a gravistar from a black hole by observable effects: for example, by the characteristics of gravitational waves during a merger, possible gravitational wave
A GravaStar (from gravitational vacuum condensate star) is a hypothetical ultra-compact cosmic object considered as a possible alternative to a black hole. The idea was proposed by Pavel Mazur and Emil Mottola in the early 2000s. Unlike a typical black hole, a gravistar in the original model lacks a singularity and a true event horizon. It is assumed that within such an object there is a region of vacuum energy with negative pressure, approximately described by the relation (p = -\rho ). This inner region resembles de Sitter space and, due to its properties, prevents further gravitational collapse. Around it is an extremely thin and dense shell that separates the inner vacuum from outer space. From the outside, a gravistar may be virtually indistinguishable from a black hole: its gravitational field can be so strong that it would be extremely difficult for a distant observer to distinguish between the two objects. The central idea of the theory is that during the collapse of a massive star, instead of forming a singularity, a phase transition can occur, followed by the formation of a vacuum core and shell, stabilizing the object and preventing it from becoming a classical black hole. Therefore, gravistars are particularly interesting in the context of problems related to singularities and the black hole information paradox. Theoretically, it would be possible to distinguish a gravistar from a black hole by observable effects: for example, by the characteristics of gravitational waves during a merger, possible gravitational wave "echoes," differences in tidal deformability, or the behavior of matter around the object. However, to date, there is no convincing observational evidence for the existence of gravistars. Furthermore, various gravistar models face problems of stability, the need for unusual properties of matter, and the question of how exactly such objects could form in nature. Therefore, at present, a gravistar is an interesting, but still speculative, theoretical concept at the intersection of general relativity, quantum field theory, and the physics of ultra-compact objects, rather than an established type of cosmic object. #blackhole #theory #scary #physics

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