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💎UNIVERSAL STUFF💎

@universal.things1

"Simple science. Real experiments. Physics explained in 10 seconds.”

💎UNIVERSAL STUFF💎 é criador de conteúdo no TikTok, com 248.6K seguidores e 3.2M curtidas. Os vídeos têm em média 5.7M visualizações, com taxa de engajamento de 23.8%. Hashtags mais usadas: #physics, #science e #alberteinstein.

248.6K
Seguidores
153
Seguindo
3.2M
Curtidas
5.7M
Média de views
Engajamento: 23.8% Itália 🗣️ inglês
248.6K
Seguidores
3.2M
Total de curtidas
5.7M
Média de views
54
Vídeos
153
Seguindo
6.3K
Favoritos
23.8%
Engajamento

Crescimento & Previsão

−200
Seguidores / 6d
+0
Total de curtidas / 6d
248.4K
Previsão 7 dias (Seguidores)
247.6K
Previsão 30 dias (Seguidores)

−200 seguidores nos últimos 6 dias. Previsão: 248.4K seguidores em 7 dias, 247.6K em 30 dias (3.2M curtidas).

Seguidores no TikTok por dia

Em 2026-09-22, 💎UNIVERSAL STUFF💎 tinha 248.7K seguidores no TikTok (−100 em relação ao dia anterior).

DataSeguidoresVariação
248.7K−100
248.8K+0
248.8K+0
248.8K+0
248.8K−100
248.9K+0

Ganhos estimados

Valor estimado por post patrocinado: $1.2K a $6.2K, com base em cerca de US$ 5 a US$ 25 por 1.000 seguidores. É uma estimativa pelo tamanho da audiência, não uma renda declarada.

Crescimento ao longo do tempo

Seguidores

Carregando…

Total de curtidas

Carregando…

Média de views

Carregando…

Alcance %

Carregando…

Última atualização:

Perfil no TikTok

Vídeos recentes

Astrophysics…..#physics #astrophysics #sun #moon #space #day #night
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▶ 62.4M ❤ 0 💬 0

Astrophysics…..#physics #astrophysics #sun #moon #space #day #night

#onthisday #physics #fyp
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▶ 1.7K ❤ 0 💬 0

#onthisday #physics #fyp

#physics
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▶ 1.7K ❤ 0 💬 0

#physics

River Geomorphology When a dam is constructed, the river doesn't simply slow down... it begins to transform. Sediments that once moved freely are trapped and start accumulating behind the structure. Upstream, deposition increases, gradually reshaping the riverbed over time. Downstream, the water becomes clearer, yet more erosive in nature. The natural balance between sedimentation and erosion is disrupted. What was once a dynamic, self-regulating system becomes controlled... but permanently altered.#river #water #geomorphology
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▶ 2.1K ❤ 0 💬 0

River Geomorphology When a dam is constructed, the river doesn't simply slow down... it begins to transform. Sediments that once moved freely are trapped and start accumulating behind the structure. Upstream, deposition increases, gradually reshaping the riverbed over time. Downstream, the water becomes clearer, yet more erosive in nature. The natural balance between sedimentation and erosion is disrupted. What was once a dynamic, self-regulating system becomes controlled... but permanently altered.#river #water #geomorphology

A plain sheet of paper bends and collapses easily because it has very little structural stiffness. However, when the paper is folded or creased, its strength increases dramatically. The folds create ridges that function like miniature support beams, spreading forces more evenly and resisting deformation. These geometric changes make the paper more rigid, allowing it to support far greater loads. Engineers apply the same concept in architecture and design. Features such as arches, corrugations, and I-beams use shape and geometry to enhance strength, transforming simple materials into durable and efficient structures. This is not a single formal theory, but rather an application of several principles in structural engineering and mechanics: Structural Rigidity – A structure becomes harder to bend when its geometry changes from a flat surface to a folded or curved one. Second Moment of Area – Folding increases the distribution of material away from the center, greatly improving stiffness without adding more material. Buckling – Flat sheets buckle easily, while folds and corrugations help prevent this failure mode. Structural Engineering – Engineers exploit geometry—using arches, trusses, corrugation, and beams—to maximize strength and efficiency. A common everyday example is Corrugated Cardboard. The wavy inner layer makes cardboard much stronger than a simple flat sheet of paper, even though it uses almost the same material. #physics #engineering #structure
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▶ 13.4K ❤ 0 💬 0

A plain sheet of paper bends and collapses easily because it has very little structural stiffness. However, when the paper is folded or creased, its strength increases dramatically. The folds create ridges that function like miniature support beams, spreading forces more evenly and resisting deformation. These geometric changes make the paper more rigid, allowing it to support far greater loads. Engineers apply the same concept in architecture and design. Features such as arches, corrugations, and I-beams use shape and geometry to enhance strength, transforming simple materials into durable and efficient structures. This is not a single formal theory, but rather an application of several principles in structural engineering and mechanics: Structural Rigidity – A structure becomes harder to bend when its geometry changes from a flat surface to a folded or curved one. Second Moment of Area – Folding increases the distribution of material away from the center, greatly improving stiffness without adding more material. Buckling – Flat sheets buckle easily, while folds and corrugations help prevent this failure mode. Structural Engineering – Engineers exploit geometry—using arches, trusses, corrugation, and beams—to maximize strength and efficiency. A common everyday example is Corrugated Cardboard. The wavy inner layer makes cardboard much stronger than a simple flat sheet of paper, even though it uses almost the same material. #physics #engineering #structure

Physics is actually insane 🤯#physics #science #fyp #viral #brain
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▶ 4.2K ❤ 0 💬 0

Physics is actually insane 🤯#physics #science #fyp #viral #brain

Physics….#illusion #physics #science #fyp
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▶ 5.6K ❤ 0 💬 0

Physics….#illusion #physics #science #fyp

Physics…..#physics #science #alberteinstein #fyp #astrophysics
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▶ 45.9K ❤ 0 💬 0

Physics…..#physics #science #alberteinstein #fyp #astrophysics

Physics….#physics #science #transformer #electric #huge
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▶ 1.8K ❤ 0 💬 0

Physics….#physics #science #transformer #electric #huge

Physics….#physics #science #alberteinstein #isacnewton #fyp
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▶ 6K ❤ 0 💬 0

Physics….#physics #science #alberteinstein #isacnewton #fyp

Physics works always……#physics #science #fyp #paper #coin
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▶ 6K ❤ 0 💬 0

Physics works always……#physics #science #fyp #paper #coin

Perguntas frequentes

Quantos seguidores 💎UNIVERSAL STUFF💎 tem?

Em 2026-09-22, 💎UNIVERSAL STUFF💎 (@universal.things1) tem 248.6K seguidores no TikTok.

Qual a velocidade de crescimento de 💎UNIVERSAL STUFF💎 no TikTok?

−200 seguidores nos últimos 6 dias. Previsão: 248.4K seguidores em 7 dias, 247.6K em 30 dias (3.2M curtidas).

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Curtidas
385M
Views
9.6M
Engaj.
0.0%