What Shapes Do Simple Molecules Make | Properties of Matter | Chemistry | FuseSchool

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What Shapes Do Simple Molecules Make | Properties of Matter | Chemistry | FuseSchool

What Shapes Do Simple Molecules Make | Properties of Matter | Chemistry | FuseSchool Learn the basics about the shapes of simple molecules, when learning about properties of matter. In reality the shapes of simple molecules are 3-D molecules and should be visualised as such. Imagine now the central carbon atom surrounded by a sphere. We now need to position the hydrogens in such a way as to ensure that all the paired electrons in the covalent bonds are as far away from each other as possible. This is known as electron pair repulsion theory as the electron pairs and bonding pairs repel one another and we will end up with a triangular pyramid shape at the bottom, with a hydrogen at each corner and a fourth hydrogen coming out of the top. This shape with four bonding pairs is known as a tetrahedral molecule with a bond angle of 109 degrees. In water there are two bonding pair electrons and two lone pair electrons. The lone pair electrons will repel the binding pair electrons even more than before creating a v shaped or bent molecules with a bind angle of 104 degrees. All three of these molecules were based on 4electron pairs, either binding pairs or lone pairs. They were therefore all based on the original tetrahedral molecule however the bond angle changed due to the extra repulsion due to the lone pair electrons. SUBSCRIBE to the FuseSchool YouTube channel for many more educational videos. Our teachers and animators come together to make fun & easy-to-understand videos in Chemistry, Biology, Physics, Maths & ICT. VISIT us at www.fuseschool.org, where all of our videos are carefully organised into topics and specific orders, and to see what else we have on offer. Comment, like and share with other learners. You can both ask and answer questions, and teachers will get back to you. These videos can be used in a flipped classroom model or as a revision aid. Find all of our Chemistry videos here: https://www.youtube.com/playlist?list=PLW0gavSzhMlReKGMVfUt6YuNQsO0bqSMV Find all of our Biology videos here: https://www.youtube.com/playlist?list=PLW0gavSzhMlQYSpKryVcEr3ERup5SxHl0 Find all of our Physics videos here: https://www.youtube.com/playlist?list=PLW0gavSzhMlTWm6Sr5uN2Uv5TXHiZUq8b Find all of our Maths videos here: https://www.youtube.com/playlist?list=PLW0gavSzhMlTKBNbHH5u1SNnsrOaacKLu Instagram: https://www.instagram.com/fuseschool/ Facebook: https://www.facebook.com/fuseschool/ Twitter: https://twitter.com/fuseSchool Access a deeper Learning Experience in the FuseSchool platform and app: www.fuseschool.org Follow us: http://www.youtube.com/fuseschool Befriend us: http://www.facebook.com/fuseschool This is an Open Educational Resource. If you would like to use the video, please contact us: info@fuseschool.org
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What Shapes Do Simple Molecules Make | Properties of Matter | Chemistry | FuseSchool

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What Shapes Do Simple Molecules Make | Properties of Matter | Chemistry | FuseSchool

Learn the basics about the shapes of simple molecules, when learning about properties of matter.

In reality the shapes of simple molecules are 3-D molecules and should be visualised as such. Imagine now the central carbon atom surrounded by a sphere. We now need to position the hydrogens in such a way as to ensure that all the paired electrons in the covalent bonds are as far away from each other as possible. This is known as electron pair repulsion theory as the electron pairs and bonding pairs repel one another and we will end up with a triangular pyramid shape at the bottom, with a hydrogen at each corner and a fourth hydrogen coming out of the top. This shape with four bonding pairs is known as a tetrahedral molecule with a bond angle of 109 degrees.

In water there are two bonding pair electrons and two lone pair electrons. The lone pair electrons will repel the binding pair electrons even more than before creating a v shaped or bent molecules with a bind angle of 104 degrees. All three of these molecules were based on 4electron pairs, either binding pairs or lone pairs. They were therefore all based on the original tetrahedral molecule however the bond angle changed due to the extra repulsion due to the lone pair electrons.



SUBSCRIBE to the FuseSchool YouTube channel for many more educational videos. Our teachers and animators come together to make fun & easy-to-understand videos in Chemistry, Biology, Physics, Maths & ICT.

VISIT us at www.fuseschool.org, where all of our videos are carefully organised into topics and specific orders, and to see what else we have on offer. Comment, like and share with other learners. You can both ask and answer questions, and teachers will get back to you.

These videos can be used in a flipped classroom model or as a revision aid.

Find all of our Chemistry videos here:

Find all of our Biology videos here:

Find all of our Physics videos here:

Find all of our Maths videos here:

Instagram:
Facebook:
Twitter:

Access a deeper Learning Experience in the FuseSchool platform and app: www.fuseschool.org
Follow us:
Befriend us:

This is an Open Educational Resource. If you would like to use the video, please contact us: info@fuseschool.org


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