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Telegram profile photo for ☆ Astronomia ☆

Channel

☆ Astronomia ☆

@UniversiParalleli

On this record: Growth · Engagement · Posts · Citations · Handles named that no longer answer · Cite this entry

1,034subscribers

-3 since we began measuring on 6 August 2026

Risers and fallers across the register · movement among entries of 1,000–3,162.

Register entry

Telegram ID-1001120477521
TypeChannel
Username@UniversiParalleli
CreatedBetween 1 May 2017 and 22 November 2018— estimated from Telegram’s id allocation, not measured. How this range is calculated.
First recorded6 August 2026
Last confirmed live14 August 2026
Measurements held4
Confirmed unchanged1 time, most recently 14 August 2026
On Telegramt.me/UniversiParalleli

Growth

1,0341,0371,035.56 August 2026 — 1,037 subscribers6 August 2026 — 1,037 subscribers7 August 2026 — 1,036 subscribers14 August 2026 — 1,034 subscribers6 August 202614 August 2026
4 measurements spanning 8 days, net -3. Dots are measurements; the straight line between them is drawn to join them, not to claim we know the path taken in between — snapshots are recorded only when a count changes, so gaps mean “no change observed”, never “interpolated”. The vertical axis spans 1,034–1,037 and does not start at zero.
Measurement log — every subscribers count we have recorded
Measured (UTC)SubscribersChange
14 Aug 2026, 07:341,034-2
7 Aug 2026, 17:011,036-1
6 Aug 2026, 17:171,037no change
6 Aug 2026, 17:051,037first reading

Engagement

20 posts held, back to 22 November 2018the reader has not yet reached the start of this channel’s public history, so older posts may sit further back, unread. Read across 1 pageof Telegram’s post history, 20 posts per page.

Nothing published in the last 30 days. ERR and ER are rolling 30-day measures, so there is nothing to compute — we hold 20 posts for this entry, the most recent from 27 May 2023. An engagement rate over an empty window would be a number about nothing.

Recent posts

15 Oct 2019, 04:28 UTC≈11,900 viewsread 6 August 2026

Si tratta di una rete di canali fluviali fossili che si estende sulla superficie di Marte per oltre 700 chilometri. Nirgal Vallis èuna delle più lunghe reti di letti fluviali presenti sul pianeta. Forgiato da un mix di acqua corrente e impatti di corpi rocciosi con la superficie marziana, è un sistema di canali che si trova a sud dell’equatore e la cui età – stimata esplorando le caratteristiche dei crateri circostan

Signed Aly☆

15 Oct 2019, 04:28 UTC≈13,800 viewsread 6 August 2026

Gli scienziati sono concordi nel dire che un tale sistema si sia formato in modo analogo alle reti fluviali morfologicamente simili presenti sulla Terra. Poiché non sembrano esserci affluenti secondari che lo hanno alimentato, è probabile che l’acqua sia stata fornita da un mix di precipitazioni e dal flusso d’acqua superficiale proveniente dal terreno circostante. Anche se gli scienziati non escludono una terza poss

Signed Aly☆

15 Jan 2019, 03:26 UTC≈11,500 viewsread 6 August 2026

Sotto le estreme pressioni dei nuclei delle nane bianche, gli atomi sono così densamente compressi che i loro elettroni si liberano, lasciando un gas elettronico conduttivo che segue le leggi della fisica quantistica, mentre i nuclei carichi positivamente assumono forma fluida. Quando il nucleo si raffredda fino a circa 10 milioni di gradi, è stata rilasciata abbastanza energia da innescare l’inizio della solidificaz

Signed Aly☆

15 Jan 2019, 03:25 UTC≈8,850 viewsread 6 August 2026

Cosa sono le nane bianche Le nane bianche sono lo stadio finale dell’evoluzione di stelle di piccola massa che, dopo essere diventate per un certo tempo giganti rosse, perdono i loro strati esterni e iniziano a contrarsi e raffreddarsi rilasciando il loro calore residuo. Sono anche fra gli oggetti stellari più antichi dell’universo, e hanno un ciclo di vita estremamente prevedibile, tanto da essere usate dagli astr

Signed Aly☆

15 Jan 2019, 03:20 UTC≈6,750 viewsread 6 August 2026

Un gruppo di astronomi dell’Università di Warwick ha ottenuto la prima prova diretta dell’esistenza di stelle “di cristallo”, nane bianche che si solidificano in una grande massa cristallina. La scoperta è illustrata su “Nature”. L’esistenza di stelle di questo tipo era stata prevista cinquant’anni fa dall’astrofisico dell’Università di Rochester Hugh M. Van Horn, ma finora non era stata trovata alcuna prova diretta

Signed Aly☆

15 Jan 2019, 03:20 UTC≈6,010 viewsread 6 August 2026
Photo

#scoperte Il Sole diventerà una gigantesca stella di cristallo.

Signed Aly☆

26 Nov 2018, 02:27 UTC≈6,080 viewsread 6 August 2026

Approfondimento: Questo raggruppamento scintillante di stelle, che sembra un caleidoscopio, è stato scoperto dall’astronomo scozzese James Dunlop nel 1826. NGC 1866 è insolito, in quanto si tratta di un ammasso sorprendentemente giovane, situato abbastanza vicino a noi da poter studiare le sue stelle individualmente. In generale le osservazioni effettuate sugli ammassi globulari hanno rivelato che gran parte delle l

Signed Aly ☆

Showing the 12 most recent of 20 posts we hold for @UniversiParalleli. View and reaction counts are the latest single reading for each post, not a live figure, and a recent post is still accumulating both. A view count marked was rounded by Telegram before we ever saw it — t.me prints views in full below 1,000 and to three significant figures above, so ≈1,200,000 means somewhere between 1,150,000 and 1,249,999. Unmarked counts are exact. Text is reproduced from the public post preview and truncated for length.

Citation-graph rank

Citation-graph rank — 1,327,392 of 1,481,217entries in the measured graph. A weighted position computed from the forward and mention edges below — republished posts weigh more than named mentions — and recomputed periodically, over the whole graph. Published only as this ordinal position, never as a score: a position is a fact, and a score printed beside one channel’s name would read as a verdict this register does not make. The two counts beneath stay separate for the same reason mentions are never summed with forwards anywhere else on this page — a named-by count costs nothing to manufacture. The top 100 by this measure, or how it is computed.

Mentions

Named by 1 registered channel — every channel on the register whose own posts have named this one, by its current username or any other username it currently holds, merged from two separately captured readings of the same fact so a namer caught by only one of them is not missed and a namer both caught is not counted twice. A username this channel has since dropped is not matched — that handle may belong to someone else now, and crediting today’s namer to yesterday’s owner would misattribute it.

Named by

Channels on the register whose posts name this channel's handle.

A mention is a weaker signal than a forward and is counted separately for that reason — naming a channel is not republishing it, and a handle in a post body is easy to place deliberately. The post counts beside each row below are distinct posts in which the handle appeared, from posts we have read on both sides — the “Named by N registered channels” figure above is a different count, of distinct NAMING CHANNELS rather than posts, and is not the sum of the rows under it.

Cite this entry

A live page changes as we take new readings, so a citation should name the measurement it is based on, not just the URL. The line below cites the subscriber count as measured 14 August 2026 — this entry's latest reading, not the date you are reading this.

“☆ Astronomia ☆” (@UniversiParalleli), 1,034 subscribers as measured 14 August 2026. Telegram Register, tgregister.com/channel/UniversiParalleli.

Full measurement history, CC BY 4.0. Every reading this register holds for this entry, not just the latest one, as a dated, downloadable record: CSV · JSON. Free to use with attribution to tgregister.com. Each file carries its own generation timestamp, which is the figure to cite for exactly when the data was retrieved.