@ali_kay1: Perimenopause or burnt out?

Ali Kay
Ali Kay
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Region: US
Thursday 09 July 2026 22:24:50 GMT
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aimitha37
Aimitha :
sounds like burn out.. but I also came to the realization that I don't want to do more at work, I do not want to climb the latter.. I just want a simple, slow, calm life with as little responsibilities as possible but I also had some scary health stuff that put so much into perspective... but also maybe peri?
2026-07-11 04:44:34
1
jessica.fillmore
JESS ♡ :
Just sent you a PM! Building a house has given me the worst burnout I’ve ever had. Also with my 3rd boy he’s been a baby all throughout our build. My thyroid is also way off. Like I went into full autoimmune during this build and postpartum. I feel like a shell of myself. 😮‍💨
2026-07-12 19:50:31
0
bevcre8s
Bevi :
Curious about your birth order. I’m the oldest five and the only daughter, and my drive for achievement and building and entrepreneurship has been insane for the majority of my 20s and 30s. Last year I turned 39. Something shifted. The entrepreneurship and longing to run my own thing never changed, but the intensity did. I don’t have Littles at home like you do, but as my girls enter 13 years and get into the workforce, I feel the need to be at home to be there soft spot to land. Maybe it’s Perimenopause. Maybe it’s just your next chapter. Either way you’re doing great.🥰💯
2026-07-09 22:56:38
1
puppiesandkittens333
Summer’s coming soon 2026 👏 :
I think it just stress… it’s all added up… with kids + jobs + the new house…. It’s all too much
2026-07-10 10:01:57
0
schiking
Shy-rah :
Having experienced both..it sounds more like burn out.
2026-07-10 00:13:31
0
user1859613362133
user1859613362133 :
I've heard there is a link between early perimenopause with ADHD
2026-07-12 13:56:17
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lindanadalet
Linda Nadalet :
you might not have as much energy - maybe burnt out? could be a combination but you don't look old enough to be in peri.
2026-07-10 06:14:18
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chellovemed.16
Chellove Med :
@nursesofinstagram we were just talking about this!!! Definitely combination of everything. You’re not alone! 🫶🏼💕
2026-07-10 19:28:25
0
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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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