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Practical capabilities

Twelve things you have to be able to do at the bench and in the field, with the maths each one carries and the places marks go missing.

Every board assesses practical work and no two organise it the same way: some run a separate endorsement over a named list of activities, some examine it in a written paper, one sits an external practical exam. Writing to a single list first would have baked one board's numbering into the library and left every other route reading like a translation. So these capabilities are ours, described by the technique. Which route requires which of them is a reconciliation that has not begun, and until it has, this page names no board rather than guessing at one.

One note on the numbers you will meet in the lessons. Worked practical results here are idealised. Real readings scatter, and manufacturing a plausible-looking scatter would teach you to read noise that was never measured, so where a lesson needs a table it says the figures are idealised and spends its effort on the analysis instead.

P01

Optical microscopy and calibrated measurement

Set up a light microscope, focus safely at each magnification, and turn what is on the slide into a number with units.

What you have to be able to do

The maths it carries

Where marks are lost

Taught alongside: Cells, microscopy and biological organisation

P02

Preparing biological material: squashes, sections and mounts

Prepare a temporary slide from living tissue, stain it so the structure of interest is visible, and interpret what the stain shows.

What you have to be able to do

The maths it carries

Where marks are lost

Taught alongside: Cells, microscopy and biological organisation · Cell cycles, reproduction and development

P03

Qualitative biochemical tests, and what they do not tell you

Run the standard tests for the major biological molecules and state precisely what a positive result licenses you to conclude.

What you have to be able to do

The maths it carries

Where marks are lost

Taught alongside: Biological molecules, water and inorganic ions · Nutrition, digestion and health evidence

P04

Colorimetry, dilution series and calibration curves

Build a series of known concentrations, measure them, and read an unknown off the line rather than guessing at it.

What you have to be able to do

The maths it carries

Where marks are lost

Taught alongside: Biological molecules, water and inorganic ions · Nutrition, digestion and health evidence

P05

Measuring the rate of an enzyme-controlled reaction

Follow a reaction over time, extract an initial rate from it, and control the variables that would otherwise explain the result.

What you have to be able to do

The maths it carries

Where marks are lost

Taught alongside: Enzymes and metabolic control

P06

Investigating membrane permeability

Damage a membrane in a controlled way and quantify how much has leaked out.

What you have to be able to do

The maths it carries

Where marks are lost

Taught alongside: Membranes and transport across cells

P07

Water relations of plant tissue: osmosis and transpiration

Measure the water potential of a tissue by finding the solution that leaves it unchanged, and measure water movement through a whole shoot.

What you have to be able to do

The maths it carries

Where marks are lost

Taught alongside: Membranes and transport across cells · Plant transport and mineral nutrition

P08

Dissection and biological drawing

Open an organ or system safely, identify its structures, and record them in a drawing that could be used by somebody who was not there.

What you have to be able to do

The maths it carries

Where marks are lost

Taught alongside: Exchange surfaces and gas exchange · Animal transport and cardiovascular biology

P09

Aseptic technique and the effect of antimicrobials

Work without contaminating a culture or yourself, and measure how effectively a substance stops microbial growth.

What you have to be able to do

The maths it carries

Where marks are lost

Taught alongside: Pathogens, disease and immunity

P10

Chromatography and the separation of pigments

Separate a mixture of pigments and identify each one by how far it travelled relative to the solvent.

What you have to be able to do

The maths it carries

Where marks are lost

Taught alongside: Photosynthesis and primary productivity

P11

Measuring respiration and photosynthesis rates

Measure a metabolic rate by following a gas or an indicator, with controls that rule out the explanations you are not testing.

What you have to be able to do

The maths it carries

Where marks are lost

Taught alongside: Respiration and cellular energy · Photosynthesis and primary productivity

P12

Field sampling, distribution and behavioural response

Estimate what lives where, and how much of it, without walking to the interesting-looking patch and calling that a sample.

What you have to be able to do

The maths it carries

Where marks are lost

Taught alongside: Ecology, populations and environmental change · Classification, biodiversity and conservation