ENZYMES
DIGESTIVE SYSTEM
FOOD TESTS
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SCIENCE CHALLENGE
100

What type of biological molecule are most enzymes?

Proteins

100

Where does digestion begin?

Mouth.

100

Which food test is used to identify starch?

Iodine test.

100

A student chews a piece of bread for several minutes and notices that it begins to taste slightly sweet. Why?

Amylase in saliva begins breaking starch into smaller sugars.

100

What are the three main types of teeth involved in cutting, tearing and grinding food?

Incisors, canines and molars.

200

What is the name of the region of an enzyme where the substrate binds?

Active site

200

Which organ produces bile?

Liver.

200

What colour does iodine turn when starch is present?

Blue - black

200

Why does food need to be broken down into smaller molecules during digestion?

Large food molecules cannot be easily absorbed; smaller soluble molecules can pass through the intestinal wall.

200

Name the enzyme that begins protein digestion in the stomach.

Pepsin

300

What is the name given to the molecule that an enzyme acts upon?

Susbtrate

300

Where does most absorption of digested nutrients occur?

Small intestine.

300

Which reagent is used to test for reducing sugars?

Benedict's solution.

300

A student carries out a food test and gets a positive result for protein. Which reagent would they have used?

Biuret reagent.

300

What is the role of hydrochloric acid in the stomach?

It creates an acidic environment needed for pepsin to work and helps kill microorganisms.

400

A student heats an enzyme to 90°C and finds that it no longer works. Why?

The enzyme has been denatured; its active site has changed shape.

400

What is the function of villi in the small intestine?

They increase the surface area for absorption of digested nutrients into the blood.

400

What colour change indicates a positive Benedict's test after heating?

Blue → green/yellow/orange → brick-red, depending on the amount of reducing sugar.

400

Why does increasing temperature initially increase enzyme activity?

Molecules move faster and collide more frequently, increasing successful enzyme-substrate collisions—until the optimum temperature is reached.

400

Why is bile important even though it is not an enzyme?

It emulsifies fats into smaller droplets, increasing the surface area available for lipase to act on. 


500

Two identical enzyme reactions are carried out. One is at pH 2 and the other at pH 7. The enzyme works much faster at pH 7. Explain why.

The enzyme has an optimum pH around 7. At pH 2, changes in pH can alter the enzyme's active site and reduce its activity.

500

A person has a blockage in their bile duct. How could this affect digestion?

Less bile reaches the small intestine, reducing the emulsification of fats and making fat digestion less efficient.

500

A food sample gives a blue-black colour with iodine but remains blue with Benedict's solution. What can you conclude?

The sample contains starch but no detectable reducing sugar.

500

A student says:
"If I keep increasing the temperature, the enzyme will keep working faster."
Is the student correct? Explain.

No. Enzyme activity increases up to an optimum temperature. Above this, the enzyme can denature and its activity decreases.

500

A student investigates the effect of temperature on amylase activity. At 20°C the reaction is slow, at 37°C it is fastest, and at 70°C there is almost no reaction. Explain the results.

At 20°C, particles have less kinetic energy and there are fewer successful collisions. Around 37°C, the enzyme is near its optimum temperature. At 70°C, the enzyme becomes denatured and its active site changes shape.

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