100% tevredenheidsgarantie Direct beschikbaar na je betaling Lees online óf als PDF Geen vaste maandelijkse kosten 4.2 TrustPilot
logo-home
Essay

Unit 11 - Genetics and Genetic Engineering - Assignment C (Distinction)

Beoordeling
-
Verkocht
-
Pagina's
19
Cijfer
A
Geüpload op
31-08-2025
Geschreven in
2024/2025

This is my third assignment for Unit 11 of the BTEC Level 3 Applied Science course, all about genetics and genetic engineering. In this assignment, I studied the principles of inheritance and how genetic traits can be predicted using tools such as Punnett squares and genetic diagrams. I applied these principles to both monohybrid and dihybrid crosses, and explained how probability is used to predict outcomes. I also considered real-world examples of inherited conditions and traits. I was really proud to achieve a Distinction for this work, and I hope it can help guide you too! Just a little reminder — please use this as a reference only and don’t copy it directly, as that could count as plagiarism. Good luck with your studies!

Meer zien Lees minder
Instelling
Vak








Oeps! We kunnen je document nu niet laden. Probeer het nog eens of neem contact op met support.

Gekoppeld boek

Geschreven voor

Study Level
Publisher
Subject
Course

Documentinformatie

Geüpload op
31 augustus 2025
Bestand laatst geupdate op
1 september 2025
Aantal pagina's
19
Geschreven in
2024/2025
Type
Essay
Docent(en)
Onbekend
Cijfer
A

Onderwerpen

Voorbeeld van de inhoud

Introduction
As a trainee lab technician working for a medical research company, understanding patterns
of inheritance and the ability to analyse correlations between expected and observed
results is crucial. Our company offers work placements to sixth form students, providing
them with valuable hands-on experience in the field of genetics. One of the key concepts we
teach is how expected ratios of inheritance can differ from observed ratios and the role of
statistical tests in determining whether these differences are significant, caused by specific
factors, or simply due to chance. This essay will explore these concepts in depth, providing a
clear understanding for the students.

Variation
Variation refers to the differences that exist among individuals within a species. These
differences can arise from genetic factors, environmental influences, or a combination of
both. Variation is crucial for the process of evolution and helps populations adapt to
changing environments (Britannica, 2024).

There are two main types of variation: continuous and discontinuous.
Continuous variation is where traits can take on a range of values, leading to a range of
phenotypes. For example, height in humans is a continuous trait, as individuals can be of
any height within a certain range. This type of variation is usually influenced by multiple
genes and environmental factors (BBC Bitesize, 2024).

Discontinuous variation, on the other hand, involves traits that fall into distinct categories.
An example of this is blood type in humans, where individuals can only belong to one of the
specific categories (A, B, AB, or O). Discontinuous variation is often controlled by a single
gene or a small number of genes, leading to differences among individuals (BBC Bitesize,
2024).

A genotype refers to the genetic makeup of an organism, specifically the alleles it possesses
for a particular gene. Alleles are different versions of a gene that can determine specific
traits. For example, in pea plants, the gene for flower colour can have two alleles: one for
purple flowers (F) and one for white flowers (f). A plant with a genotype of FF or Ff will have
purple flowers, while a plant with the genotype pp will have white flowers (Scitable, 2014).

The phenotype, on the other hand, is the observable physical or biochemical characteristics
of an organism that result from the interaction of its genotype with the environment
(Biology Online, 2023). Continuing with the pea plant example, the phenotype refers to the
actual flower colour that can be seen which is either purple or white, based on the plant's
genotype.

Alleles are different versions of a gene that determine specific traits in an organism. For
example, a gene for flower colour in plants may have an allele for purple flowers (W) and an
allele for white flowers (w) (Khan Academy, 2024).
€10,01
Krijg toegang tot het volledige document:

100% tevredenheidsgarantie
Direct beschikbaar na je betaling
Lees online óf als PDF
Geen vaste maandelijkse kosten

Maak kennis met de verkoper
Seller avatar
emziee

Ook beschikbaar in voordeelbundel

Maak kennis met de verkoper

Seller avatar
emziee South West College
Volgen Je moet ingelogd zijn om studenten of vakken te kunnen volgen
Verkocht
0
Lid sinds
1 jaar
Aantal volgers
0
Documenten
24
Laatst verkocht
-
The Science Stash

Welcome to The Science Stash! Here you’ll find all my Level 3 Applied Science coursework modules, each completed to Distinction standard! Perfect for fellow students wanting top-notch guides to help you shine. Please use as inspiration only and don’t copy—let’s keep it honest and fab!

0,0

0 beoordelingen

5
0
4
0
3
0
2
0
1
0

Recent door jou bekeken

Waarom studenten kiezen voor Stuvia

Gemaakt door medestudenten, geverifieerd door reviews

Kwaliteit die je kunt vertrouwen: geschreven door studenten die slaagden en beoordeeld door anderen die dit document gebruikten.

Niet tevreden? Kies een ander document

Geen zorgen! Je kunt voor hetzelfde geld direct een ander document kiezen dat beter past bij wat je zoekt.

Betaal zoals je wilt, start meteen met leren

Geen abonnement, geen verplichtingen. Betaal zoals je gewend bent via iDeal of creditcard en download je PDF-document meteen.

Student with book image

“Gekocht, gedownload en geslaagd. Zo makkelijk kan het dus zijn.”

Alisha Student

Veelgestelde vragen