Water: a molecular cause for a biological property
| English | Português |
|---|---|
| cohesion/kəʊˈhiːʒn/ | coesão |
| adhesion/ədˈhiːʒn/ | adesão |
What would explain this observation?
- A water droplet holds together on a leaf. Its behaviour comes from interactions between molecules, not a skin made of solid water.
- Start with a prediction. State the quantities or features you would compare, then decide what evidence could distinguish two explanations.
Build the model
- Water molecules are polar. Attraction between the partially positive hydrogen of one molecule and a partially negative oxygen of another gives hydrogen bonding. Cohesion · Coesão 内聚力 is attraction between water molecules; adhesion 黏附力 is attraction to another surface.
- cohesion: Attraction between molecules of the same substance; adhesion: Attraction between different substances.
What accounts for cohesion in liquid water?
The same intermolecular interactions help explain surface tension and the energy needed to change temperature. Heating changes molecular motion and interactions; it does not normally break the covalent O–H bonds.
Match each technical term to its precise meaning.
Use the definitions to distinguish related quantities and processes.
Choose evidence that can test it
- The same intermolecular interactions help explain surface tension and the energy needed to change temperature. Heating changes molecular motion and interactions; it does not normally break the covalent O–H bonds.
- Compare equal drops on clean surfaces under fixed temperature. Measure contact angle or spreading consistently. A detergent changes the system, so record concentration rather than treating all liquids as equivalent.
Which two habits make the investigation or model in this case more defensible?
Compare equal drops on clean surfaces under fixed temperature. Measure contact angle or spreading consistently. A detergent changes the system, so record concentration rather than treating all liquids as equivalent.
Work from known quantities
- State the known values and their units. Choose the relation because its assumptions fit this case, then rearrange before substitution.
- Known: 0.100 kg of water warms by 5.0 K; specific heat capacity is 4,180 J/(kg K). Q = mcΔT = 0.100 × 4,180 × 5.0 = 2,090 J. This calculation excludes energy absorbed by the container and lost to the surroundings.
Use c = 4,180 J/(kg K). Calculate Q for 0.200 kg water heated through 5.0 K. Use the same sequence: known quantities → model → relation → substitution → unit and interpretation.
Use c = 4,180 J/(kg K). Calculate Q for 0.200 kg water heated through 5.0 K.
The result is 4180 J. Known: 0.100 kg of water warms by 5.0 K; specific heat capacity is 4,180 J/(kg K). Q = mcΔT = 0.100 × 4,180 × 5.0 = 2,090 J. This calculation excludes energy absorbed by the container and lost to the surroundings.
Check the conclusion and its limits
- Hydrogen bonds between molecules differ from covalent bonds within a water molecule. Polarity alone does not make every substance dissolve well in water.
- Return to the original observation. Explain what the result supports, which conditions it assumes, and one way to test a competing explanation.
Boiling water normally breaks its O–H covalent bonds. This claim is false: Hydrogen bonds between molecules differ from covalent bonds within a water molecule. Polarity alone does not make every substance dissolve well in water.
Water: a molecular cause for a biological property: The same intermolecular interactions help explain surface tension and the energy needed to change temperature. Heating changes molecular motion and interactions; it does not normally break the covalent O–H bonds.
Boiling water normally breaks its O–H covalent bonds.
Hydrogen bonds between molecules differ from covalent bonds within a water molecule. Polarity alone does not make every substance dissolve well in water.
Attraction between molecules of the same substance: write the technical term.
cohesion means Attraction between molecules of the same substance.