@mahadihasan3985:

PRANK KING👑
PRANK KING👑
Open In TikTok:
Region: AE
Wednesday 12 August 2026 17:38:55 GMT
436364
18441
1032
646

Music

Download

Comments

shahin94137
Shahin :
next part
2026-08-25 02:54:06
0
sulthan.shaik4
Sultan Shik :
cosmic
2026-08-25 16:03:57
0
boardofmohammadtuhin
🇧🇩💤MOHAMMAD TUHIN🐞🇱🇷 [1] :
💞
2026-08-13 00:16:51
8
user2237748848135
āφāĻŽāĻžāϰ āϏāĻĒā§āύ āϤ⧁āĻŽāĻŋ āφāĻŽāĻžāϰ āϏāĻĒā§āύ āϤ⧁āĻŽāĻŋ :
āĻŽāĻšāĻŋāϞāĻž āĻŦāĻžāϏ āύāĻžāϟāϕ⧇āϰ āύāĻžāĻŽ đŸĨ°đŸĨ°
2026-08-13 10:18:22
11
ozhadhassan
wazahasan :
āύāĻžāϟāĻ• āĻāϰ āύāĻžāĻŽ āĻ•āĻŋ āĻ­āĻžāχ đŸĨ°đŸĨ°
2026-08-13 07:33:38
16
nirobdebnath81
NIROB DEBNATh āϜ :
𝔀đ“ēđ“ē𝓮đ“Ēđ“ŧđ“­đ“¯đ“°đ“ąđ“ŗđ“´đ”ƒđ”đ“ŋ đ“ŋđ“Ģ𝓷đ“ļ
2026-08-24 16:37:42
2
userryopuyxwhs
user86736445800 :
â¤ī¸
2026-08-24 14:44:56
1
user7617599194095
āφāĻŽāĻžāϰ āĻŦāĻžāĻŦāĻžāϰ āϛ⧋āϟ āϰāĻžāϜāĻ•āĻ¨ā§āϝāĻž :
āύāĻžāϟāϕ⧇āϰ āύāĻžāĻŽ āĻ•āĻŋ
2026-08-14 09:17:13
7
mdimonshekh5
free firs love r :
āϤāĻĄ
2026-08-25 03:33:33
1
mdfirdauh
MdFiRdAUh :
āύāĻžāϟāĻ• āύāĻžāĻŽ āĻ•āĻŋ
2026-08-13 17:55:43
5
nazmaa9855
Nazma A :
😔😔😔😔😔😔😔😔😔😔😔😔😔😔😔@offline 6:30
2026-08-14 09:02:50
2
rimaakter8666
MD Abdullah :
[Sticker] đŸĨ°đŸĨ°đŸĨ°
2026-08-15 06:21:51
3
user3481117139502
I am Fake đŸĢ¤ :
2026-08-14 09:51:54
1
user5467169449181
â¤ī¸â¤ī¸ āĻļā§āϰ⧇āĻˇā§āĻ  āϜāĻ—āϤ⧇āϰ āύāĻˇā§āϟ āĻ•āĻŦāĻŋ 😭 :
āύāĻžāϟāϕ⧇āϰ āύāĻžāĻŽ āĻ•āĻŋ👍🤔
2026-08-13 05:40:15
5
alone_life_bd
Romantic_LoverđŸĨĩđŸĨ° :
āύāĻžāϟāϕ⧇āϰ āύāĻžāĻŽ āĻ•āĻŋ
2026-08-13 01:09:54
6
user7617599194095
āφāĻŽāĻžāϰ āĻŦāĻžāĻŦāĻžāϰ āϛ⧋āϟ āϰāĻžāϜāĻ•āĻ¨ā§āϝāĻž :
āύāĻžāϟāϕ⧇āϰ āύāĻžāĻŽ āĻ•āĻŋ
2026-08-13 16:18:23
3
warishahumayra6433
Warisha Humayra :
āĻāĻ• āĻšāĻžāϜāĻžāϰ āĻŦāĻžāϰāĻŋ āύāĻžāϟāĻ• āĻĻ⧇āĻ–āĻ›āĻŋ āύāĻžāĻŽ āĻ“ āϜāĻžāύāĻŋ āĻŽāĻšāĻŋāϞāĻž āĻŦāĻžāϏ āϏāĻžāĻ°ā§āĻ­āĻŋāϏ
2026-08-15 08:06:18
7
mdmamungazi4306
$^Dream Queen*★🧕 :
āύāĻžāϟāϕ⧇āϰ āύāĻžāĻŽ āĻ•āĻŋ🤔🤔
2026-08-13 09:22:24
3
md.helal.766
āĻŽā§‹āĻšāĻžāĻŽā§āĻŽāĻĻ āĻšā§‡āϞāĻžāϞ āĻŽāĻŋāϝāĻŧāĻž :
āύāĻžāϟāϕ⧇āϰ āύāĻžāĻŽ āĻ•āĻŋ
2026-08-14 03:02:26
2
user5090451612072
md Arif :
â¤ī¸â¤ī¸â¤ī¸
2026-08-13 04:29:28
3
loveletter959
āĻ…āϚāĻŋāύ āĻĒāĻĨ⧇āϰ āϰāĻžāϜāϕ⧁āĻŽāĻžāϰ. M :
Next
2026-08-13 08:52:07
2
raicharaicha471
â¤ī¸â¤ī¸ āϤ⧋āĻŽāĻžāϰ āĻŽāĻžāĻā§‡ āφāĻŽāĻŋ â¤ī¸â¤ī¸ :
2026-08-25 12:27:29
0
To see more videos from user @mahadihasan3985, please go to the Tikwm homepage.

Other Videos

The Theory of the Hidden Universe Imagine that everything we can see—every star, planet, galaxy, atom, and even ourselves—is only a small fraction of what actually exists. Scientists already know that ordinary matter makes up only a small part of the universe. Most of the universe appears to consist of mysterious substances called dark matter and dark energy. But what if these aren’t simply strange ingredients of our universe? What if they are evidence that there is an entire hidden structure of reality that we cannot directly observe? This idea can be called the Hidden Universe Theory. We know that galaxies behave as if there is much more mass present than we can see. Stars orbit the centers of galaxies at speeds that should cause galaxies to fly apart if only visible matter existed. Something invisible appears to provide additional gravitational influence. Scientists call this mysterious material dark matter. Dark matter is especially interesting because it doesn’t seem to interact with light in the same way ordinary matter does. We cannot simply look through a telescope and see it. Instead, scientists detect its effects through gravity. In a sense, we don’t see dark matter itself—we see its fingerprints. Now consider dark energy. The universe is expanding, and that expansion is actually accelerating. Something appears to be pushing space apart on enormous scales. Scientists call this unknown influence dark energy. So we have two enormous mysteries: invisible matter influencing gravity and an unknown phenomenon accelerating cosmic expansion. The theory proposes that these mysteries could be connected. Perhaps our universe is not a completely isolated system. Maybe what we call “dark matter” is ordinary matter belonging to another physical sector that interacts with our universe primarily through gravity. Imagine two invisible worlds occupying the same enormous cosmic space. Matter in our universe would be able to interact normally with light, electromagnetism, and nuclear forces. Matter in the hidden sector might follow completely different rules. The only major connection between the two could be gravity. If this were true, the universe could be far stranger than it appears. There could theoretically be hidden stars, hidden planets, or even hidden galaxies that are completely invisible to our telescopes. They would not necessarily be “parallel universes” in the science-fiction sense. Instead, they could exist within the same overall universe while remaining almost completely undetectable to us. There is an even more interesting possibility. What if the hidden sector has its own version of physics? Perhaps it contains particles that interact with each other through forces we cannot detect. A hidden galaxy could potentially have structures as complicated as our own, but from our perspective it would appear to be nothing more than an unexplained gravitational effect. This theory could also explain why discovering dark matter has been so difficult. Scientists have spent decades searching for individual dark-matter particles, but perhaps they are looking for only one piece of a much larger system. However, there is a major problem: there is currently no evidence that a hidden civilization, hidden planets, or an entire invisible universe actually exists. Dark matter and dark energy are real scientific problems, but the explanation above is speculative. The simplest explanation may ultimately be something completely different. That’s what makes the idea interesting. Science progresses by turning strange observations into testable questions. If the Hidden Universe Theory were correct, scientists might eventually discover subtle interactions between ordinary matter and the hidden sector. Extremely sensitive detectors, astronomical observations, or experiments involving gravity could potentially reveal unexpected patterns. The biggest lesson is that the universe may not be limited to what our eyes—or even our most powerful telescopes—can see.
The Theory of the Hidden Universe Imagine that everything we can see—every star, planet, galaxy, atom, and even ourselves—is only a small fraction of what actually exists. Scientists already know that ordinary matter makes up only a small part of the universe. Most of the universe appears to consist of mysterious substances called dark matter and dark energy. But what if these aren’t simply strange ingredients of our universe? What if they are evidence that there is an entire hidden structure of reality that we cannot directly observe? This idea can be called the Hidden Universe Theory. We know that galaxies behave as if there is much more mass present than we can see. Stars orbit the centers of galaxies at speeds that should cause galaxies to fly apart if only visible matter existed. Something invisible appears to provide additional gravitational influence. Scientists call this mysterious material dark matter. Dark matter is especially interesting because it doesn’t seem to interact with light in the same way ordinary matter does. We cannot simply look through a telescope and see it. Instead, scientists detect its effects through gravity. In a sense, we don’t see dark matter itself—we see its fingerprints. Now consider dark energy. The universe is expanding, and that expansion is actually accelerating. Something appears to be pushing space apart on enormous scales. Scientists call this unknown influence dark energy. So we have two enormous mysteries: invisible matter influencing gravity and an unknown phenomenon accelerating cosmic expansion. The theory proposes that these mysteries could be connected. Perhaps our universe is not a completely isolated system. Maybe what we call “dark matter” is ordinary matter belonging to another physical sector that interacts with our universe primarily through gravity. Imagine two invisible worlds occupying the same enormous cosmic space. Matter in our universe would be able to interact normally with light, electromagnetism, and nuclear forces. Matter in the hidden sector might follow completely different rules. The only major connection between the two could be gravity. If this were true, the universe could be far stranger than it appears. There could theoretically be hidden stars, hidden planets, or even hidden galaxies that are completely invisible to our telescopes. They would not necessarily be “parallel universes” in the science-fiction sense. Instead, they could exist within the same overall universe while remaining almost completely undetectable to us. There is an even more interesting possibility. What if the hidden sector has its own version of physics? Perhaps it contains particles that interact with each other through forces we cannot detect. A hidden galaxy could potentially have structures as complicated as our own, but from our perspective it would appear to be nothing more than an unexplained gravitational effect. This theory could also explain why discovering dark matter has been so difficult. Scientists have spent decades searching for individual dark-matter particles, but perhaps they are looking for only one piece of a much larger system. However, there is a major problem: there is currently no evidence that a hidden civilization, hidden planets, or an entire invisible universe actually exists. Dark matter and dark energy are real scientific problems, but the explanation above is speculative. The simplest explanation may ultimately be something completely different. That’s what makes the idea interesting. Science progresses by turning strange observations into testable questions. If the Hidden Universe Theory were correct, scientists might eventually discover subtle interactions between ordinary matter and the hidden sector. Extremely sensitive detectors, astronomical observations, or experiments involving gravity could potentially reveal unexpected patterns. The biggest lesson is that the universe may not be limited to what our eyes—or even our most powerful telescopes—can see.

About