@pressfiles: @Zeinne 🐼 kaya pa ba?🥹🤩 #copyediting #headlinewriting #journalism

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Saturday 09 August 2025 08:12:21 GMT
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zairee349
zairee :
haynakuuntulog nalang akuuu
2026-07-31 09:49:30
2
theaaaxx_5
𝖙𝖍𝖊𝖆 :
hii po
2026-08-04 12:27:03
0
kia_655
Kia :
hello po, pede po mag ask about ccoyreading?
2025-09-28 05:55:47
3
_vanillaicecreamwithtoyo
🧷 :
How to write po yung printer's direction sa body and lead and also ano po meaning ng 2 line sa gilid?
2026-04-22 01:36:03
0
meiow1233
daily find budols :
pwedi po mag ask?
2025-11-11 07:38:39
1
c4z1_
C4z1 :
hello po, real po ba na may additional points sa CRHW pag gumamit ng kicker or hammer headline? and pag naglagay po ng stet? thank youu po
2025-11-09 02:15:38
1
calmado.19
Chichi :
Hi po, may I ask if may soft copy kayo nung mga activities na na post niyo po? If meron po, pwede po bang makahingi?😇 Advance thank you po.🫶
2025-12-02 07:40:11
2
viv7lopie
rrang :
@Tristan👾: need help po penge tips sa pag o-organize ng paragraphs and how do I know if tapos na yung article mismo, lutang ako sa discussion😭
2026-01-03 13:41:23
0
juwqkd
julz 😵‍💫 :
hello po ate, pwede po kayo i ask po about this category, first time ko lang po kasi sumali dito and wala po ako masyado alam
2025-11-08 02:16:15
1
sharapova_miro
sxaura :
LEZZGOO DEN²!!!
2025-08-09 08:29:44
2
kaieshii
kai :
share some tips🥹🥹
2025-11-03 04:06:21
1
martinsjeans
eunyz :
patulong pooo, malapit na po yung journalism namin huhu
2026-08-04 11:20:08
0
hsmy__
H :
Ma'am, patutor po. 🥰
2025-08-13 11:56:48
1
risaluvsmoon
𝙹𝙷𝚄𝚁𝙸𝚉ᥫ᭡ :
ate pa tutor poo😭 gusto kopong sumali sa journalism next s.y pero Wala papo Akong sobrang alam about journalisms pero nag aaral po Ako dito sa tiktok, I hope you're willing to help me poo😭😭
2025-10-31 08:20:33
0
bringbackequality
ᴊᴀʏᴠᴇᴇ-sᴋʏʟᴇʀ :
𝐚𝐭𝐞 𝐚𝐧𝐨 𝐩𝐨 𝐛𝐚 𝐦𝐞𝐚𝐧𝐢𝐧𝐠 𝐧𝐠 #
2025-10-14 12:44:21
0
_vanillaicecreamwithtoyo
🧷 :
tip po
2026-04-22 01:35:12
1
fatima.khaira.san
kaykay :
copy editing yarn🥰🥰
2025-08-17 10:24:03
1
shanaraiah
ayraaa :
patay, @ariane
2025-09-30 13:16:52
2
troglodyte85
MARTINS🧌 :
@prenomous_web CAN HELP
2025-11-04 09:20:49
1
_v3nn18
ven :
Kaya moyan Denn🥰@Zeinne 🐼
2025-08-09 09:14:25
1
_roxieee333
ruxy :
😁
2025-10-28 00:28:54
1
bossricky29
BossRicky29 :
🥰
2025-08-13 02:25:36
1
ashley.smith.lopez48
Ashley smith :
😂
2026-01-14 15:00:29
0
chokolit_9
KALBO_DALISAY :
😂
2025-11-09 22:11:08
0
deftaxle
🎀 :
😂😂😂
2026-01-21 08:16:48
0
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This is my friend Omar at a nightclub dancing and he got 49 hugs 🤗 Graham’s number is one of the largest finite numbers ever to appear in a serious mathematical proof. It was introduced by mathematician Ronald Graham in connection with a problem in Ramsey theory. Although it is unimaginably huge, it is still finite.  To appreciate its size: * A million = 10^6 * A googol = 10^{100} * A googolplex = 10^{10^{100}} * Graham’s number is vastly larger than a googolplex—so much larger that even writing down the number of digits it has is impossible within the observable universe.  It is defined using Knuth’s up-arrow notation, which extends exponentiation: * 3 \uparrow 3 = 3^3 = 27 * 3 \uparrow\uparrow 3 = 3^{3^3} = 3^{27} * 3 \uparrow\uparrow\uparrow 3 is enormously larger. Graham’s number is built recursively: * g_1 = 3 \uparrow\uparrow\uparrow\uparrow 3 * Each subsequent g_n uses the previous value g_{n-1} as the number of up-arrows. * Graham’s number is g_{64}.  Despite its enormous size, it has some surprising properties: * It is an exact, well-defined integer. * It can be computed in principle (though not written out in full). * Its last 10 decimal digits are 2464195387.  Interestingly, Graham’s number is not the largest number known to mathematics. Numbers such as TREE(3) and certain Busy Beaver values are incomparably larger.  If you’re interested, I can also explain why Graham’s number is so large using simple diagrams and analogies, without requiring advanced mathematics.#Faketcc #truecrime #fyp #actor #Omarmatten
This is my friend Omar at a nightclub dancing and he got 49 hugs 🤗 Graham’s number is one of the largest finite numbers ever to appear in a serious mathematical proof. It was introduced by mathematician Ronald Graham in connection with a problem in Ramsey theory. Although it is unimaginably huge, it is still finite. To appreciate its size: * A million = 10^6 * A googol = 10^{100} * A googolplex = 10^{10^{100}} * Graham’s number is vastly larger than a googolplex—so much larger that even writing down the number of digits it has is impossible within the observable universe. It is defined using Knuth’s up-arrow notation, which extends exponentiation: * 3 \uparrow 3 = 3^3 = 27 * 3 \uparrow\uparrow 3 = 3^{3^3} = 3^{27} * 3 \uparrow\uparrow\uparrow 3 is enormously larger. Graham’s number is built recursively: * g_1 = 3 \uparrow\uparrow\uparrow\uparrow 3 * Each subsequent g_n uses the previous value g_{n-1} as the number of up-arrows. * Graham’s number is g_{64}. Despite its enormous size, it has some surprising properties: * It is an exact, well-defined integer. * It can be computed in principle (though not written out in full). * Its last 10 decimal digits are 2464195387. Interestingly, Graham’s number is not the largest number known to mathematics. Numbers such as TREE(3) and certain Busy Beaver values are incomparably larger. If you’re interested, I can also explain why Graham’s number is so large using simple diagrams and analogies, without requiring advanced mathematics.#Faketcc #truecrime #fyp #actor #Omarmatten

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