Biology · Professor Darwin

Every card in Cells and organisation

The whole deck, in order — so you can read it through before your child ever sees it.

1 KS3-BIOL-CEL-0001

The organelle that controls the cell's activities

The nucleus

HintIt is the headquarters that gives the orders.

WhyThe nucleus stores the DNA and uses it to direct everything the cell does, like a control centre issuing instructions.

2 KS3-BIOL-CEL-0002

The organelles that transfer energy during respiration

The mitochondria

HintThese tiny powerhouses supply the whole cell with usable energy.

WhyMitochondria carry out aerobic respiration, transferring energy from glucose so the cell can use it. Busy cells such as muscle cells have many of them.

3 KS3-BIOL-CEL-0003

The part of the cell that controls what enters and leaves

The cell membrane

HintIt is the gatekeeper at the edge, letting some things through.

WhyThe membrane is a thin barrier surrounding the cell that lets useful substances in and waste out, controlling the cell's exchange with its surroundings.

4 KS3-BIOL-CEL-0004

The part of a plant cell that supports and strengthens it

The cell wall

HintMade of tough fibres, it stops the plant flopping over.

WhyThe cell wall is made of cellulose and lies outside the membrane. It gives the cell a firm shape and helps hold the whole plant upright.

5 KS3-BIOL-CEL-0005

The organelle that absorbs light for photosynthesis

The chloroplast

HintIts green pigment traps sunlight so the plant can make food.

WhyChloroplasts contain the green pigment chlorophyll, which soaks up light energy for photosynthesis. That is why they sit in leaf cells, not roots.

6 KS3-BIOL-CEL-0006

The large permanent ____ in a plant cell is filled with cell sap.

vacuole

HintThis fluid-filled sac swells to press outward and keep the plant rigid.

WhyThe vacuole stores cell sap and, when full, presses out against the wall to keep the cell turgid — which is why a well-watered plant stands up straight.

7 KS3-BIOL-CEL-0007

A leaf contains photosynthetic, transport and protective tissues working together. Which level of organisation does that make a leaf?

An organ

HintThe same level as your heart or a kidney: several tissue types combined for one job.

WhyThe ladder runs cell → tissue → organ → organ system. A tissue is many cells of one type doing one job; the next rung combines several tissues for a bigger job. Plants climb the same ladder — leaf, root, stem and flower — with transport and reproductive systems above them.

8 KS3-BIOL-CEL-0008

What is the formula for magnification?

Image size ÷ real size

HintCompare how big it looks with how big it truly is.

WhyMagnification tells you how many times bigger the image is than the object. Rearranged, real size = image size ÷ magnification.

9 KS3-BIOL-CEL-0009

Why does a red blood cell have no nucleus?

To make more room to carry oxygen

HintLosing its control centre frees up space for its cargo.

WhyWithout a nucleus taking up space, a red blood cell can pack in more haemoglobin, so each cell carries as much oxygen as possible.

10 KS3-BIOL-CEL-0010

What feature of a root hair cell increases the surface area for absorbing water?

Its long hair-like extension

HintIt juts out as a thin finger reaching into the soil for moisture.

WhyThe long, thin projection gives the cell a much larger surface area, so it can absorb more water from the soil by osmosis.

11 KS3-BIOL-CEL-0011

In which direction do particles move during diffusion?

From a high concentration to a low concentration

HintThey drift towards wherever there is more room, leaving the crowded region behind.

WhyDiffusion moves particles down a concentration gradient until they are evenly spread. Cells use it to take in oxygen and get rid of carbon dioxide.

12 KS3-BIOL-CEL-0012

Which substance moves across a partially permeable membrane during osmosis?

Water

HintIt is the substance a thirsty root is trying to soak up.

WhyOsmosis is the movement of water across a partially permeable membrane, from a dilute solution to a more concentrated one. Only water moves, not the dissolved solute.

Keep what you learn

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