Paperfriendlyresourcesuk
New Resources Coming soon!
PFR resources have been designed to ensure good quality teaching is not compromised by printing restrictions or buffering videos. Lessons that include worksheets have been created for teachers to print at least two copies to an A4 sheet.
Paperfriendlyresourcesuk
New Resources Coming soon!
PFR resources have been designed to ensure good quality teaching is not compromised by printing restrictions or buffering videos. Lessons that include worksheets have been created for teachers to print at least two copies to an A4 sheet.
Common problems of the eye lesson created in accordance to the NEW AQA Specification (9-1). Designed for a higher ability, separate science class, although content can be adjusted to suit any ability. Includes powerpoint timers, slide animations, embedded video’s, homework worksheet, markscheme and mini review. NB: If you are unable to play embedded videos please view slide notes for link.
THIS LESSON IS FOR BIOLOGY ONLY
AQA spec link: 4.5.2.3
Relevant chapter: B10 The human nervous system. AQA Biology Third edition textbook-Page 156-157
Students are required to know the following;
Students should be able to relate the structures of the eye to their functions. This includes: • accommodation to focus on near or distant objects
Accommodation is the process of changing the shape of the lens to focus on near or distant objects.
To focus on a near object:
• the ciliary muscles contract
• the suspensory ligaments loosen
• the lens is then thicker and refracts light rays strongly.
To focus on a distant object:
• the ciliary muscles relax
• the suspensory ligaments are pulled tight
• the lens is then pulled thin and only slightly refracts light rays.
Two common defects of the eyes are myopia (short sightedness) and hyperopia (long sightedness) in which rays of light do not focus on the retina.
• Generally these defects are treated with spectacle lenses which refract the light rays so that they do focus on the retina.
• New technologies now include hard and soft contact lenses, laser surgery to change the shape of the cornea, and a replacement lens in the eye.
Students should be able to interpret ray diagrams, showing these two common defects of the eye and demonstrate how spectacle lenses correct them.
Specialisation in plant cells lesson created in accordance to the NEW AQA Specification (9-1). Designed for a higher ability class, although content can be adjusted to suit any ability. Includes: slide animations, embedded videos and practice questions with answers on slides, card sort activity and display slides.
AQA spec link: 1.1.3
Relevant chapter: B1 Cell structure and transport. AQA Biology third edition textbook-Page 12-13
Specification requires students to know the following;
Students should be able to, when provided with appropriate information, explain how the structure of different types of cell relate to their function in a tissue, an organ or organ system, or the whole organism. Cells may be specialised to carry out a particular function:
root hair cells, xylem and phloem cells in plants.
New systems of classification lesson created in accordance to the NEW AQA Specification (9-1). Designed for higher ability class, although content can be adjusted to suit any ability. Includes: embedded videos and timers, slide animations, practice questions with answers on slides, worksheet and an interactive quiz. NB: If you are unable to play videos a URL link can be found in the slide notes.
AQA spec link: 4.6.4
Relevant chapter: B15 Genetics and evolution. AQA Biology Third edition textbook-Page 252-253
Students are required to know the following;
As evidence of internal structures became more developed due to improvements in microscopes, and the understanding of biochemical processes progressed, new models of classification were proposed.
Due to evidence available from chemical analysis there is now a ‘threedomain system’ developed by Carl Woese. In this system organisms are divided into:
•archaea (primitive bacteria usually living in extreme environments)
•bacteria (true bacteria)
•eukaryota (which includes protists, fungi, plants and animals).
WS 1.1 Understand how scientific methods and theories develop over time.
Evolutionary trees are a method used by scientists to show how they believe organisms are related. They use current classification data for living organisms and fossil data for extinct organisms.
Please note that I have merged the content of two lessons into one resource.
Trophic levels and biomass transfers lesson created in accordance to the NEW AQA Specification (9-1). Designed for a higher ability class, although content can be adjusted to suit any ability. This lesson Includes powerpoint timers, slide animations, past paper questions, self-assessment, interactive mark scheme, embedded videos and review.
For general enquiries or support please email: Paperfriendlyresources@gmail.com
NB: If you are unable to play embedded videos please view slide notes for link. *
AQA spec link: 4.7.4; 1, 2, 3
Relevant chapter: B18 Biodiversity and ecosystems. AQA Biology third edition textbook-Page 300-301
Students are required to know the following;
7.4.1 Students should be able to describe the differences between the trophic levels of organisms within an ecosystem.
Trophic levels can be represented by numbers, starting at level 1 with plants and algae. Further trophic levels are numbered subsequently according to how far the organism is along the food chain.
Level 1: Plants and algae make their own food and are called producers.
Level 2: Herbivores eat plants/algae and are called primary consumers.
Level 3: Carnivores that eat herbivores are called secondary consumers.
Level 4: Carnivores that eat other carnivores are called tertiary consumers. Apex predators are carnivores with no predators.
Decomposers break down dead plant and animal matter by secreting enzymes into the environment. Small soluble food molecules then diffuse into the microorganism.
7.4.2 Pyramids of biomass can be constructed to represent the relative amount of biomass in each level of a food chain.
Trophic level 1 is at the bottom of the pyramid.
Students should be able to construct accurate pyramids of biomass from appropriate data.
7.4.3 Students should be able to: • describe pyramids of biomass • explain how biomass is lost between the different trophic levels.
Producers are mostly plants and algae which transfer about 1% of the incident energy from light for photosynthesis.
Only approximately 10% of the biomass from each trophic level is transferred to the level above it.
Losses of biomass are due to:
• not all the ingested material is absorbed, some is egested as faeces
• some absorbed material is lost as waste, such as carbon dioxide and water in respiration and water and urea in urine.
Large amounts of glucose are used in respiration.
Students should be able to calculate the efficiency of biomass transfers between trophic levels by percentages or fractions of mass.
Students should be able to explain how this affects the number of organisms at each trophic level.
The importance of communities lesson created in accordance to the NEW AQA Specification (9-1). Designed for a higher ability class, although content can be adjusted to suit any ability. Includes powerpoint timers, slide animations, embedded video’s and mini review. NB: If you are unable to play embedded videos please view slide notes for link.
AQA spec link: 4.7.1.1
Relevant chapter: B15 Adaptations, interdependence and competitions. AQA Biology combined edition textbook-Page 206-207
Students are required to know the following;
Students should be able to describe: •different levels of organisation in an ecosystem from individual organisms to the whole ecosystem • the importance of interdependence and competition in a community.
An ecosystem is the interaction of a community of living organisms (biotic) with the non-living (abiotic) parts of their environment. To survive and reproduce, organisms require a supply of materials from their surroundings and from the other living organisms there. Plants in a community or habitat often compete with each other for light and space, and for water and mineral ions from the soil. Animals often compete with each other for food, mates and territory. Within a community each species depends on other species for food, shelter, pollination, seed dispersal etc. If one species is removed it can affect the whole community. This is called interdependence. A stable community is one where all the species and environmental factors are in balance so that population sizes remain fairly constant.
Theories of evolution lesson created in accordance to the NEW AQA Specification (9-1). Designed for a separates class. Includes: embedded videos and timers, slide animations, practice questions with answers on slides, worksheet and an interactive quiz. NB: If you are unable to play videos a URL link can be found in the slide notes.
AQA spec link: 4.6.3.1
Relevant chapter: B15 Genetics and evolution. AQA Biology trilogy edition textbook-Page 236-237
Students are required to know the following;
Charles Darwin, largely as a result of observations on a round the world expedition, linked to developing knowledge of geology and fossils, proposed the theory of natural selection:
• Individual organisms within a particular species show a wide range of variation for a characteristic.
• Individuals with characteristics most suited to the environment are more likely to survive to breed successfully.
• The characteristics that have enabled these individuals to survive are then passed on to the next generation.
Other theories, including that of Jean-Baptiste Lamarck, are based mainly on the idea that changes that occur in an organism during its lifetime can be inherited. We now know that in the vast majority of cases this type of inheritance cannot occur. A study of creationism is not required.
Fossils and extinction lesson created in accordance to the NEW AQA Specification (9-1). Designed for higher ability class, although content can be adjusted to suit any ability. Includes: embedded videos and timers, slide animations, practice questions with answers on slides, worksheet and an interactive quiz. NB: If you are unable to play videos a URL link can be found in the slide notes.
AQA spec link: 4.6.3.5
Relevant chapter: B15 Genetics and evolution. AQA Biology third edition textbook-Page 224-245
Students are required to know the following;
Fossils are the ‘remains’ of organisms from millions of years ago, which
are found in rocks. Fossils may be formed:
• from parts of organisms that have not decayed because one or more
of the conditions needed for decay are absent
• when parts of the organism are replaced by minerals as they decay
•as preserved traces of organisms, such as footprints, burrows and
rootlet traces.
Many early forms of life were soft-bodied, which means that they
have left few traces behind. What traces there were have been mainly
destroyed by geological activity. This is why scientists cannot be certain about how life began on Earth.
WS 1.3 Appreciate why the fossil record is incomplete.
Deforestation and peat destruction lesson created in accordance to the NEW AQA Specification (9-1). Designed for a higher ability class, although content can be adjusted to suit any ability. This lesson also contains working scientifically activities that requires students to improve scientific methods, choose suitable techniques and equipment.
This lesson Includes powerpoint timers, slide animations, self-assessment, homework (may be used as mini-assessment), mark scheme, embedded video’s and review.
For general enquiries or support please email: Paperfriendlyresources@gmail.com
***Paper friendly tips: Print the homework sheets as two pages to one A4 side-double sided. Alternatively you can email the homework to students to complete on laptops/desktops. You do not need to print the mark scheme.
NB: If you are unable to play embedded videos please view slide notes for link. *
AQA spec link: 4.7.3.3, 3.4
Relevant chapter: B18 Biodiversity and ecosystems. AQA Biology third edition textbook-Page 292-293
Students are required to know the following;
7.3.3 Humans reduce the amount of land
available for other animals and plants by building, quarrying, farming, and dumping waste.
The destruction of peat bogs, and other areas of peat to produce garden compost, reduces the area of this habitat and thus the variety of different plant, animal, and microorganism
species that live there (biodiversity). The decay or burning of the peat releases carbon dioxide into the atmosphere.
7.3.4 Large-scale deforestation in tropical areas has occurred to:
• provide land for cattle and rice fields
• grow crops for biofuels.
Cloning lesson created in accordance to the NEW AQA Specification (9-1). Designed for higher ability separates class, although content can be adjusted to suit any ability. Includes: questions, slide timers, slide animations, interactive answers on slides, worksheet and a plenary. *This lesson includes a practical which is not required. *
NB: This lesson is for SEPARATE science ONLY
AQA spec link: 4.6.2.5
Relevant chapter: B14 Variation and evolution. AQA Biology third edition textbook-Page 226-227.
Students are required to know the following;
Tissue culture: using small groups of cells from part of a plant to grow identical new plants. This is important for preserving rare plant species or commercially in nurseries. Cuttings: an older, but simple, method used by gardeners to produce many identical new plants from a parent plant. Embryo transplants: splitting apart cells from a developing animal embryo before they become specialised, then transplanting the identical embryos into host mothers.
WS 1.3, 1.4 Explain the potential benefits and risks of cloning in agriculture and in medicine and that some people have ethical objections. There are links with this content to Advantages and disadvantages of sexual and asexual reproduction (biology only) and Selective breeding.
Organisms in their environment lesson created in accordance to the NEW AQA Specification (9-1). Designed for a higher ability class, although content can be adjusted to suit any ability. Includes powerpoint timers, slide animations, embedded video’s and mini review. NB: If you are unable to play embedded videos please view slide notes for link.
AQA spec link: 4.7.1.2 + 4.7.1.3
Relevant chapter: B15 Adaptations, interdependence and competitions. AQA Biology combined edition textbook-Page 208-209
Students are required to know the following;
Students should be able to explain how a change in an abiotic factor would affect a given community given appropriate data or context. Abiotic (non-living) factors which can affect a community are: •• light intensity •• temperature •• moisture levels •• soil pH and mineral content •• wind intensity and direction •• carbon dioxide levels for plants •• oxygen levels for aquatic animals.
Students should be able to explain how a change in a biotic factor might affect a given community given appropriate data or context. Biotic (living) factors which can affect a community are: •• availability of food •• new predators arriving •• new pathogens •• one species outcompeting another so the numbers are no longer sufficient to breed.
Inheritance in action lesson created in accordance to the NEW AQA Specification (9-1).
Designed for a TRILOGY class, although content can be adjusted to suit any ability. Includes: slide animations, embedded videos and practice questions with answers on slides as well as a quiz.
AQA spec link: 6.1.6
Relevant chapter: B13 Genetics and reproduction. AQA trilogy textbook-Page 168-169.
This resource has been amended since the last review
More about extinction lesson created in accordance to the NEW AQA Specification (9-1). Designed for higher ability class, although content can be adjusted to suit any ability. Includes: embedded videos and timers, slide animations, practice questions with answers on slides, homework worksheet and an interactive quiz. NB: If you are unable to play videos a URL link can be found in the slide notes.
AQA spec link: 4.6.3.6
Relevant chapter: B15 Genetics and evolution. AQA Biology Third edition textbook-Page 246-247
Students are required to know the following;
Extinctions occur when there are no remaining individuals of a species
still alive.
Students should be able to describe factors which may contribute to the
extinction of a species.
Adult cell cloning lesson created in accordance to the NEW AQA Specification (9-1). Designed for higher ability separates class, although content can be adjusted to suit any ability. Includes: embedded videos and timers, slide animations, practice questions with answers on slides, worksheet and an interactive quiz. NB: If you are unable to play videos a URL link can be found in the slide notes.
NB: This lesson is for SEPARATE science ONLY
AQA spec link: 4.6.2.5
Relevant chapter: B14 Variation and evolution. AQA Biology third edition textbook-Page 228-229.
Students are required to know the following;
Adult cell cloning: • The nucleus is removed from an unfertilised egg cell. • The nucleus from an adult body cell, such as a skin cell, is inserted into the egg cell. • An electric shock stimulates the egg cell to divide to form an embryo. • These embryo cells contain the same genetic information as the adult skin cell. • When the embryo has developed into a ball of cells, it is inserted into the womb of an adult female to continue its development.
WS 1.3, 1.4 Explain the potential benefits and risks of cloning in agriculture and in medicine and that some people have ethical objections. There are links with this content to Advantages and disadvantages of sexual and asexual reproduction (biology only) and Selective breeding.
Investigating the effect of temperature on the rate of decay of fresh milk by measuring pH change (RP 10-separate science). This practical was completed in one lesson, students were asked to construct a graph from their data for homework. I have included how i conducted the practical in the slide notes.
AQA spec link: 4.7.2.3
Relevant chapter: B17 Organising an ecosystem. AQA Biology third edition textbook-Page 282-283
Students are required to know the following;
Required practical activity 10: investigate the effect of temperature on the rate of decay of fresh milk by measuring pH change.
AT skills covered by this practical activity: AT 1, 3, 4 and 5.
This practical activity also provides opportunities to develop WS and MS. Details of all skills are given in Key opportunities for skills development.
Evolution by natural selection lesson created in accordance to the NEW AQA Specification (9-1). Designed for higher ability class, although content can be adjusted to suit any ability. Includes: embedded videos and timers, slide animations, practice questions with answers on slides and an interactive quiz. NB: If you are unable to play videos a URL link can be found in the slide notes.
AQA spec link: 4.6.2.1 + 4.6.2.2
Relevant chapter: B14 Variation and evolution. AQA Biology third edition textbook-Page 220-221.
Students are required to know the following;
Students should be able to:
• state that there is usually extensive genetic variation within a population of a species
• recall that all variants arise from mutations and that: most have no effect on the phenotype; some influence phenotype; very few determine phenotype.
Mutations occur continuously. Very rarely a mutation will lead to a new phenotype. If the new phenotype is suited to an environmental change it can lead to a relatively rapid change in the species.
Students should be able to describe evolution as a change in the inherited characteristics of a population over time through a process of natural selection which may result in the formation of a new species.
The theory of evolution by natural selection states that all species of living things have evolved from simple life forms that first developed more than three billion years ago.
Students should be able to explain how evolution occurs through natural selection of variants that give rise to phenotypes best suited to their environment.
If two populations of one species become so different in phenotype that they can no longer interbreed to produce fertile offspring they have formed two new species.
Uses of monoclonal antibodies lesson created in accordance to the NEW AQA Specification (9-1). Designed for a higher ability SEPARATE (trilogy) class, although content can be adjusted to suit any ability. Includes: slide animations, embedded videos,questions with answers on slides and homework, with mark scheme.
NB: This resource is for separate science only
AQA spec link: 4.3.2.2
Relevant chapter: B6 Preventing and treating diseases. AQA Biology third edition textbook-Page 107-109
Specification requires students to know the following;
Students should be able to describe some of the ways in which monoclonal antibodies can be used.
•To treat some diseases: for cancer the monoclonal antibody can be bound to a radioactive substance, a toxic drug or a chemical which stops cells growing and dividing. It delivers the substance to the cancer cells without harming other cells in the body.
Students are not expected to recall any specific tests or treatments but given appropriate information they should be able to explain how they work.
Monoclonal antibodies create more side effects than expected. They are not yet as widely used as everyone hoped when they were first developed.
Feeding relationships lesson created in accordance to the NEW AQA Specification (9-1). Designed for a higher ability class, although content can be adjusted to suit any ability. Includes powerpoint timers, slide animations, embedded video’s and mini review. NB: If you are unable to play embedded videos please view slide notes for link.
AQA spec link: 4.7.2.1
Relevant chapter: B16 organising an ecosystem. AQA Biology combined edition textbook-Page 224-225
Students are required to know the following;
Students should understand that photosynthetic organisms are the producers of biomass = for life on Earth. Feeding relationships within a community can be represented by food chains. All food chains begin with a producer which synthesises molecules. This is usually a green plant or alga which makes glucose by photosynthesis.
Producers are eaten by primary consumers, which in turn may be eaten by secondary consumers and then tertiary consumers.
Consumers that kill and eat other animals are predators, and those eaten are prey. In a stable community the numbers of predators and prey rise and fall in cycles.
WS 1.2 Interpret graphs used to model predator-prey cycles.
Students should be able to interpret graphs used to model these cycles.
More about genetics lesson created in accordance to the NEW AQA Specification (9-1).
Designed for a higher ability TRILOGY class, although content can be adjusted to suit any ability. Includes: slide animations, embedded videos and practice questions with answers on slides as well as a quiz. Lots of interactive punnet squares to get the whole class involved.
AQA spec link: 6.1.8
Relevant chapter: B13 Genetics and reproduction. AQA trilogy textbook-Page 170-171.
Making monoclonal antibodies lesson created in accordance to the NEW AQA Specification (9-1). Designed for a higher ability SEPARATE (trilogy) class, although content can be adjusted to suit any ability. Includes: slide animations, embedded videos and practice questions with answers on slides.
NB: This resource is for separate science only
AQA spec link: 4.3.2.1
Relevant chapter: B6 Preventing and treating diseases. AQA Biology third edition textbook-Page 106-107
Specification requires students to know the following;
Students should be able to describe how monoclonal antibodies are produced.
Monoclonal antibodies are produced from a single clone of cells. The antibodies are specific to one binding site on one protein antigen and so are able to target a specific chemical or specific cells in the body.
They are produced by stimulating mouse lymphocytes to make a particular antibody. The lymphocytes are combined with a particular kind of tumour cell to make a cell called a hybridoma cell. The hybridoma cell can both divide and make the antibody. Single hybridoma cells are cloned to produce many identical cells that all produce the same antibody. A large amount of the antibody can be collected and purified.
Selective breeding lesson created in accordance to the NEW AQA Specification (9-1). Designed for higher ability class, although content can be adjusted to suit any ability. Includes: embedded videos and timers, slide animations, practice questions with answers on slides and an interactive quiz. NB: If you are unable to play videos a URL link can be found in the slide notes.
AQA spec link: 4.6.2.3
Relevant chapter: B14 Variation and evolution. AQA Biology third edition textbook-Page 222-223.
Students are required to know the following;
Students should be able to explain the impact of selective breeding of food plants and domesticated animals. Selective breeding (artificial selection) is the process by which humans breed plants and animals for particular genetic characteristics. Humans have been doing this for thousands of years since they first bred food crops from wild plants and domesticated animals.
Selective breeding involves choosing parents with the desired characteristic from a mixed population. They are bred together. From the offspring those with the desired characteristic are bred together. This continues over many generations until all the offspring show the desired characteristic.
The characteristic can be chosen for usefulness or appearance:
• Disease resistance in food crops.
• Animals which produce more meat or milk.
• Domestic dogs with a gentle nature.
• Large or unusual flowers.
Selective breeding can lead to ‘inbreeding’ where some breeds are particularly prone to disease or inherited defects.
WS 1.3, 1.4
Explain the benefits and risks of selective breeding given appropriate information and consider related ethical issues.