β Must-know
π Formula β The word equation for photosynthesis is .
Further detail
π As light intensity increases, the rate of photosynthesis increases, so a water plant generally produces more bubbles per minute when the lamp is closer.
Light energy + water + carbon dioxide β glucose + oxygen, supporting most life.
β Must-know
In a leaf, the palisade layer contains cells that do most of the photosynthesis, while the spongy layer contains air spaces and cells that do a small amount of photosynthesis.
Magnesium is needed to make chlorophyll, so magnesium deficiency causes yellow leaves and reduces photosynthesis.
Nitrate provides nitrogen needed to convert carbohydrates into proteins and to make chlorophyll, so nitrate deficiency causes dying leaves and small plants.
Further detail
A leaf as a factory: chloroplasts capture light, veins deliver water, and stomata admit carbon dioxide.
β Must-know
π Formula β The word equation for respiration is .
π Combustion burns fossil fuels so that the carbon in them combines with oxygen from the air to form carbon dioxide.
Further detail
π Fossil fuels are carbon-containing fuels formed from ancient buried organisms, whereas fossils are the remains or traces of organisms that have turned to rock.
Air β plant β animal or decomposer β fossil fuel β combustion β air.
β Must-know
Extracting and burning fossil fuels releases carbon stored for millions of years into the atmosphere as carbon dioxide.
Around 67 million years ago, an asteroid collided with Earth, producing dust, reduced sunlight and heat, disrupted food chains, and contributed to a mass extinction.
Up to three-quarters (75%) of the species alive at the time are thought to have become extinct because of the asteroid collision.
Increasing carbon dioxide concentration traps more heat near Earth's surface, increasing mean temperature and contributing to more extreme weather, less predictable rainfall, droughts, wildfires and flooding.
Sea level rises because warmer water expands and melting ice caps and glaciers add water to the oceans.
Further detail
More atmospheric carbon dioxide β more trapped heat β climate change and rising sea levels
β Must-know
An atom has no overall charge because it contains equal numbers of positively charged protons and negatively charged electrons, while neutrons have no charge.
Electrons occupy shells around the nucleus; the first shell holds two electrons, while the second and third shells hold up to eight electrons each.
π Elements in Group 1 have one electron in their outermost shell, Group 7 elements have seven, and Group 8 elements have full outermost shells.
Further detail
A lithium atom with atomic number 3 and mass number 7 contains 3 protons, 3 electrons and 4 neutrons.
In Group 1, atomic size increases and melting point decreases down the group; lithium melts at 180 Β°C, sodium at 98 Β°C and potassium at 63 Β°C.
Atomic number β protons β electrons β electron-shell structure
β Must-know
π Metals such as sodium lose electrons to form positive ions, whereas non-metals such as chlorine gain electrons to form negative ions.
Further detail
π Magnesium oxide forms when magnesium becomes MgΒ²βΊ by losing two electrons and oxygen becomes OΒ²β» by gaining two electrons, producing MgO.
Metals lose electrons to form positive ions, whereas non-metals gain electrons to form negative ions
β Must-know
Further detail
Hydrogen chloride has the formula HCl because hydrogen and chlorine share one pair of electrons.
Ammonia has the formula NHβ because three hydrogen atoms share three pairs of electrons with one nitrogen atom.
Ionic bonds transfer electrons, whereas covalent bonds share electrons.
β Must-know
π Ionic substances have very high melting and boiling points because strong electrostatic forces hold their ions together, whereas simple covalent substances have low melting and boiling points because weak intermolecular forces act between their molecules.
Diamond is very hard because each carbon atom forms four strong covalent bonds in a rigid three-dimensional structure.
Graphite is soft because each carbon atom bonds to three others in layers whose weak interlayer bonds allow the layers to slide over one another.
π Ionic compounds conduct electricity when melted or dissolved in water because their charged ions are free to move, whereas simple covalent molecules do not conduct electricity.
Further detail
Diamond is hard because its bonds form a rigid network, whereas graphite is soft because its layers slide.
β Must-know
π Formula β Density is calculated using .
π An object more dense than water sinks, while an object less dense than water floats.
π Heat is the total thermal energy of all particles in an object, whereas temperature is the average energy of its particles.
Further detail
The volume of an irregular object is found by measuring the increase in water volume when the object is placed in a measuring cylinder.
Gases have lower densities than liquids and solids because their particles are farther apart.
Absolute zero is β273 Β°C, the lowest possible temperature at which particles would reach their minimum motion.
More mass in the same volume increases density; greater density than water causes sinking.
β Must-know
π The law of conservation of energy states that energy cannot be created or destroyed, only changed or transferred.
π Dissipated energy spreads into the surroundings and becomes less useful, whereas destroyed energy would no longer exist; energy is dissipated but never destroyed.
π Thermal energy always transfers from a hotter place to a colder place, and the transfer rate increases when the temperature difference is greater.
Further detail
Energy transfer or storage changes its form, but conservation keeps the total constant.
β Must-know
In convection, heated liquid or gas expands, becomes less dense and rises, while colder, denser material sinks and is heated in turn, producing a convection current.
Dull, black surfaces with a large surface area are the best emitters and absorbers of thermal radiation, while shiny, white or silver surfaces with a small surface area are the worst.
Further detail
π Formula β Density is given by , so increasing volume while mass stays constant decreases density.
CCR: Conduction, Convection, Radiation.
β Must-know
During evaporation, the highest-energy particles leave the liquid, lowering the average energy of the particles that remain and therefore lowering the liquid's temperature.
Sweat cools the skin because thermal energy from the skin supplies the energy needed for sweat to evaporate, causing the skin to lose thermal energy.
Further detail
π In very humid conditions, sweat may not evaporate effectively, so body temperature can increase because the evaporative cooling effect is reduced.
π A liquid with weaker forces between its particles evaporates faster and feels colder than a liquid with stronger particle forces at the same temperature.
High-energy particles escape β the average particle energy falls β the liquid cools.
β Must-know
π Water moves through the plant in this order:
π Water vapour leaves a leaf through these stages: water leaves the xylem and enters leaf cells, water evaporates from the cellulose cell walls, water vapour diffuses through air spaces, water vapour exits through the stomata
Further detail
Roots β xylem β leaves β stomata
β Must-know
Human excretory substances include:
π Urine passes through the excretory system in this order: the kidneys filter urea and excess water from the blood, urea dissolves in the excess water to form urine, urine travels through the ureters, urine is stored in the bladder, urine leaves through the urethra
The motherβs and fetusβs blood do not mix; needed substances diffuse from the motherβs blood to the fetusβs blood, while fetal excretory substances diffuse in the opposite direction.
π Carbon monoxide from smoking reduces the oxygen that haemoglobin can transport, so fetal cells receive less oxygen and may develop less normally.
Further detail
Liver makes urea β kidneys filter blood β urine carries it out
β Must-know
π A more reactive metal can displace a less reactive metal from a solution of its salt.
Further detail
Potassium reacts very vigorously with cold water, zinc reacts with steam but not water, and copper shows no reaction with steam or water.
Zinc reacts with sulfuric acid to form zinc sulfate and hydrogen.
Magnesium reacts with oxygen to form magnesium oxide.
A more reactive metal displaces a less reactive metal from its salt solution
β Must-know
π A metal can displace another metal from its salt only when the first metal is more reactive than the second metal.
Further detail
π A mystery metal can be identified by: observing its appearance, testing its reactions with water, oxygen and dilute acid, comparing displacement reactions with metals in the reactivity series
In the thermite reaction, aluminium displaces iron from iron oxide to produce aluminium oxide and molten iron, releasing enough energy to weld railway rails.
Carbon displaces these metals from their ores:
More reactive metals displace less reactive metals; less reactive metals cannot displace more reactive metals.
β Must-know
π Formula β A metal reacts with an acid according to .
π Formula β A metal oxide reacts with an acid according to .
π Formula β An acid reacts with a carbonate according to .
π Formula β Neutralisation occurs when an acid reacts with an alkali to form a salt and water: .
Further detail
π A base is a metal oxide, while an alkali is a soluble metal base that forms an alkaline solution when dissolved in water.
Metal + acid, metal oxide + acid, carbonate + acid, then acid + alkali.
π During a chemical reaction,:
When magnesium burns, oxygen from the air combines with it to form magnesium oxide, so the product has greater mass than the original magnesium.
π As the amplitude of a sound wave increases, the loudness of the sound increases.
π As the frequency of a sound wave increases, the pitch of the sound increases.
π Reinforcement occurs when:
Two sound waves cancel completely when the peak of one meets the trough of another with equal amplitude, causing zero amplitude and no sound.
For two sound waves to cancel completely, their frequencies and amplitudes must be the same.
Atoms rearrange, so mass is conserved; bonds break and form, so energy is transferred.
| Process | Reactants | Products | Effect on Carbon Dioxide |
|---|---|---|---|
| Photosynthesis | Water and carbon dioxide | Glucose and oxygen | Removes carbon dioxide |
| Respiration | Glucose and oxygen | Carbon dioxide and water | Releases carbon dioxide |
| Group | Outer-shell structure | Key properties |
|---|---|---|
| Group 1 | One outer electron | Atomic size increases and melting point decreases down the group |
| Group 7 | Seven outer electrons | Reactivity decreases from fluorine to bromine |
| Group 8 | Full outer shell | Gases that are inert and do not form compounds |
Test your knowledge on Chemical Bonding and Material Properties with 66 multiple-choice questions with detailed corrections.
1. What does photosynthesis produce from water and carbon dioxide using light energy?
2. Which word equation correctly represents photosynthesis?
Memorize the key concepts of Chemical Bonding and Material Properties with 91 interactive flashcards.
What is photosynthesis?
The process plants use light to make glucose from water and carbon dioxide, releasing oxygen.
What is the word equation for photosynthesis?
Water plus carbon dioxide produces glucose plus oxygen.
What pigment captures sunlight energy for photosynthesis?
Chlorophyll.
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