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Science is a broad field of study as it encompasses many disciplines. Chemistry is one of the most significant branches of it. The study of chemistry is often considered to be a daunting subject by the student community. The copious number of tasks assigned to the students as a part of the homework is dreaded. To assess the student's knowledge of chemistry and its major area of study, colleges and universities often chalk out stringent guidelines on even the format and referencing of the write-up. This is what compels students to look for help with CHEM1081 assessment answers.
Handling so many subjects at once is overwhelming, and a subject like chemistry is on top of everything! It's not easy, we know. It is understandable, and this is why we are here - to help you solve those mind-boggling problems with the help of our CHEM1081 writing help. Whether you are looking for an assignment writer or you want a DIY resource for CHEM1081 dissertation writing, you are at the right place! We offer the best services for academic writing help the UK relies upon. Send us your queries to secure high distinction grades with the valuable guidance of our team of learned experts. Let's learn more about this interesting and intricate field of science and how to avail of our academic help service around it.
There are many topics grouped under broadly termed topics. Our subject matter experts who provide online help with CHEM1081 have enlisted those broad categories of topics below. You could take up our academic services if you face challenges in any of these topics. Check them out:
These are the many topics one shall encounter while studying the CHEM1081 course. Now let's elaborate on one of these topics to give you some insight into what you could expect.
According to experts who provide CHEM1081 dissertation help in the UK, any two molecules that have the same molecular formula and molecular mass but are different in their conformation, 3D shape, and functional attributes are said to be isomers of each other. There are different classifications of isomers, depending on which attributes are shared by the two isomers. In a broad categorisation, isomers are grouped into two - structural isomers (also called constitutional isomers) in which they are made up of the same atoms. Still, the connecting bonds are different, and spatial isomers (also known as stereoisomers) in which the bonds are also the same, but the position of the atoms in relation to each other are different. Also, their shape differs.
Since our focus here is on stereoisomers, let's delve deeper into our topic of concern and not drift away into endless realms of other related but extremely vast topics.
Stereoisomers are divided into two different categories. One is diastereoisomers, and another is enantiomers.
Diastereomers have the same chemical formula and a functional group that may have one or more chiral carbon centers (a carbon that is bonded to different groups on all four sides). These isomers are not mirrored images of each other, i.e.; they do not overlap on an imaginary folding plane between them. They behave differently in terms of chemical and physical attributes. The specific rotation is also different toward plane-polarised light.
Enantiomers are spatial isomers that are complete mirror images of each other and cannot be overlapped on top of each other by mere rotations or translations. The classic example of a right hand and a left hand is the best fit for the explanation of enantiomers. The two shapes, in this case, are chiral images.
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The energy that carries the proportion of the strength of the ionic bonds in an ionic compound is generally known as the Lattice energy. It helps determine a few elements of ionic solids, including their instability, solvency, and hardness.
A hydrogen bond is an electrostatic bond formed between a hydrogen atom and a more electronegative group or atom.
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