Chemistry, asked by seenu001, 11 months ago

Write the kinetic theory of gases ?

Answers

Answered by Mysteryboy01
0

\huge\mathscr\red{♡Hello Friend ♡}

\huge\rm\underline\purple{Good Morning }

\huge\blue\bigstar\pink{❤Be Safe Always }

<font color=red>

<marquee behaviour-move><font color="meganta"><h1>Kinetic Theory </h1></marquee>

The model, called the kinetic theory of gases, assumes that the molecules are very small relative to the distance between molecules. The molecules are in constant, random motion and frequently collide with each other and with the walls of any container. ... The higher the temperature, the greater the motion.

<!DOCTYPE html> <html> <svg width="100%" height="300px">\ \textless \ br /\ \textgreater \ <g id="R1" transform="translate(250 250)"> \ \textless \ br /\ \textgreater \ <ellipse rx="100" ry="0" opacity=".3">\ \textless \ br /\ \textgreater \ <animateTransform attributeName="transform" type="rotate" dur="7s" from="0" to="360" repeatCount="indefinite" />\ \textless \ br /\ \textgreater \ <animate attributeName="cx" dur="8s" values="-20; 220; -20" repeatCount="indefinite" />\ \textless \ br /\ \textgreater \ <animate attributeName="ry" dur="3s" values="10; 60; 10" repeatCount="indefinite" />\ \textless \ br /\ \textgreater \ </ellipse>\ \textless \ br /\ \textgreater \ </g><use xlink:href="#R1" transform="rotate(72 390 150)" />\ \textless \ br /\ \textgreater \ <use xlink:href="#R1" transform="rotate(144 390 150)" />\ \textless \ br /\ \textgreater \ <use xlink:href="#R1" transform="rotate(216 390 150)" />\ \textless \ br /\ \textgreater \ <use xlink:href="#R1" transform="rotate(288 390 150)" />\ \textless \ br /\ \textgreater \ </svg></body></html>

<marquee behaviour-move><font color="meganta"><h1>INCreDibLE </h1></marquee>

<marquee> <font color ="green"><h1>✌️♥️ Hope it's helps u ♥️✌️</marquee>

<marquee> <font color ="green"><h1>✌️♥️ Mark as Brainlist Answer ♥️✌️</marquee>

Answered by sushmitha8318
0

The model, called the kinetic theory of gases, assumes that the molecules are very small relative to the distance between molecules. The molecules are in constant, random motion and frequently collide with each other and with the walls of any container. ... The higher the temperature, the greater the motion.

Similar questions