dryboneS

SteamID64: 76561198272991365
SteamID32: [U:1:312725637]
SteamID: STEAM_0:1:156362818
CommunityURL: https://steamcommunity.com/profiles/76561198272991365/
ProfileURL: https://steamcommunity.com/profiles/76561198272991365

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Status: Offline
Privacy: Public
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Premium: True

Creation: 2015-12-28 17:10:34 (GMT)
Last Updated: 2024-01-18 17:11:29

VAC Banned: False
Community Banned: False
Game Banned: False
Trade Banned: False

Persona History

NameTime Changed
dryboneS2024-01-18 17:11:29
festiveboneS2023-12-09 14:55:30
dryboneS2023-11-14 16:37:08
birthda[Y]boneS🎆2023-11-13 02:14:19
dryboneS2023-06-21 06:05:53
drybonéS2023-06-19 22:55:44
dryboneS2023-01-28 17:34:50
󰀐2023-01-28 15:35:39
FestiveboneS2022-12-04 12:19:30
Christmas Enjoyer2022-12-03 09:40:10
Homeless Crazed Man2022-11-22 21:34:57

RealName History

RealNameTime Changed
Hatsune Miku2023-02-21 14:34:14

URL History

URLTime Changed

Avatar History

Privacy History

StateTime Changed
Public2023-03-22 17:17:58
Private2023-03-22 16:53:42

Comments

Total: [45] | Deleted: [1]

CommenterMessageTimestamp
The Warner SwagsRock and Stone.2024-03-25 23:31:37
dryboneSI HATE YOU2023-01-22 15:46:41
WessenI HATE YOU2023-01-22 13:05:30
dryboneSLeaf Lover Detected2022-11-13 17:50:37
GanonfireDon't do it2022-11-13 17:13:55
GanonfireI DON'T NEED NO SPEED, NopeI DON'T NEED NO HEROINE, No thanksI DON'T WANT NO COKE, Not TodayYOU CAN KEEP YOUR KETAMINE. Yeaaahhh...2022-07-16 20:43:35
LonelyCoffeeeIf a body has a net force acting on it, it undergoes accelerated motion in accordance with the second law. If there is no net force acting on a body, either because there are no forces at all or because all forces are precisely balanced by contrary forces, the body does not accelerate and may be said to be in equilibrium. Conversely, a body that is observed not to be accelerated may be deduced to have no net force acting on it.2022-07-16 16:06:16
LonelyCoffeeeNewton's third law states that when two bodies interact, they apply forces to one another that are equal in magnitude and opposite in direction. The third law is also known as the law of action and reaction. This law is important in analyzing problems of static equilibrium, where all forces are balanced, but it also applies to bodies in uniform or accelerated motion. The forces it describes are real ones, not mere bookkeeping devices. For example, a book resting on a table applies a downward force equal to its weight on the table. According to the third law, the table applies an equal and opposite force to the book. This force occurs because the weight of the book causes the table to deform slightly so that it pushes back on the book like a coiled spring.2022-07-16 16:06:09
LonelyCoffeeeNewton's second law is a quantitative description of the changes that a force can produce on the motion of a body. It states that the time rate of change of the momentum of a body is equal in both magnitude and direction to the force imposed on it. The momentum of a body is equal to the product of its mass and its velocity. Momentum, like velocity, is a vector quantity, having both magnitude and direction. A force applied to a body can change the magnitude of the momentum or its direction or both. Newton's second law is one of the most important in all of physics. For a body whose mass m is constant, it can be written in the form F = ma, where F (force) and a (acceleration) are both vector quantities. If a body has a net force acting on it, it is accelerated in accordance with the equation. Conversely, if a body is not accelerated, there is no net force acting on it.2022-07-16 16:05:58
LonelyCoffeeeThus, the principle of inertia, far from being a statement of the obvious, was once a central issue of scientific contention. By the time Newton had sorted out all the details, it was possible to accurately account for the small deviations from this picture caused by the fact that the motion of Earth's surface is not uniform motion in a straight line (the effects of rotational motion are discussed below). In the Newtonian formulation, the common observation that bodies that are not pushed tend to come to rest is attributed to the fact that they have unbalanced forces acting on them, such as friction and air resistance.2022-07-16 16:05:51
LonelyCoffeeeThe law of inertia was first formulated by Galileo Galilei for horizontal motion on Earth and was later generalized by René Descartes. Although the principle of inertia is the starting point and the fundamental assumption of classical mechanics, it is less than intuitively obvious to the untrained eye. In Aristotelian mechanics and in ordinary experience, objects that are not being pushed tend to come to rest. The law of inertia was deduced by Galileo from his experiments with balls rolling down inclined planes. For Galileo, the principle of inertia was fundamental to his central scientific task: he had to explain how is it possible that if Earth is really spinning on its axis and orbiting the Sun, we do not sense that motion. The principle of inertia helps to provide the answer: since we are in motion together with Earth and our natural tendency is to retain that motion, Earth appears to us to be at rest.2022-07-16 16:05:41
LonelyCoffeeeThe gravitational force tugging between two bodies depends on how massive each one is and how far apart the two lie, according to NASA. Even as the center of the Earth is pulling you toward it (keeping you firmly lodged on the ground), your center of mass is pulling back at the Earth. But the more massive body barely feels the tug from you, while with your much smaller mass you find yourself firmly rooted thanks to that same force. Yet Newton's laws assume that gravity is an innate force of an object that can act over a distance.Albert Einstein determined that the laws of physics are the same for all non-accelerating observers, and he showed that the speed of light within a vacuum is the same no matter the speed at which an observer travels, according to Wired. As a result, he found that space and time were interwoven into a single continuum known as space-time. And events that occur at the same time for one observer could occur at different times for another.2022-06-13 14:43:05
Kyoki_AkumuRAUGHGHHGHHHHHH2021-12-19 18:20:20
LonelyCoffeeeHoly CUNGADERO2021-11-14 16:23:48
LonelyCoffeeenevada is real2021-09-16 12:19:23
GanonfireSCREAMIN EAGLES2021-05-18 23:09:38
Nuka-Cherry!-rep stupid2021-04-06 14:49:09
NarcresAll hail thou, King of Balloons.2021-04-02 02:31:13
LonelyCoffeeedrip2021-03-08 15:16:50
Beans the spooky beandoubt2021-03-02 22:53:09
GanonfireI have a smashingly large brain2021-03-02 22:42:17
Beans the spooky beanThe bone does not2021-02-14 13:44:32
LonelyCoffeeeI have a smashingly large brain2020-11-24 15:39:27
ZestyMi mean hes okay i guess.2020-10-15 21:32:43
DemilirusWahmen2020-08-13 13:06:21
DemilirusFor.2020-08-13 13:06:16
DemilirusIs.2020-08-13 13:06:10
Demilirus♥♥♥.2020-08-13 13:03:08
Demilirusdo a neck reveal2020-07-02 13:54:48
LonelyCoffeeeMILK IS ♥♥♥ FOR WOMEN2020-06-30 12:19:59
Demilirusnorth korea on the other hand2020-06-15 16:01:07
Demilirusjapan is for weebs2020-06-15 16:00:55
Demiliruschina is for noobs2020-06-15 16:00:49
GanonfireCHINA2020-06-15 15:53:31
Demilirusbut milk is white2020-06-15 01:03:41
Demilirustomato is fruit2020-06-15 01:03:02
GRUGChina2020-04-15 17:29:34
Ganonfireno2020-03-01 20:34:41
dryboneSmaybe2020-02-05 13:55:30
Kusdabrhey I saw that your forge server is full of 6. if you need someone can you add me so I can play with u guys?2020-01-05 23:03:02
Demilirusaka Ben2019-09-30 09:02:38
GanonfireShut up2019-04-20 15:47:00
dryboneSlol2019-03-03 21:49:38
Ganonfirecan you repeat the question2019-02-09 05:34:53
crianiteHi2017-11-10 22:03:57

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