Combined Science Double Award - 9204 OxfordAQA

Variation

Akopọ

Line up thirty people from the same class and ask them their blood group. You will get four answers and nothing in between: nobody is halfway between group A and group O. Now ask the same thirty to stand against a wall and measure them. This time no two answers are quite alike, and every value between the shortest and the tallest is filled in by somebody. The same room, the same species, two completely different shapes of difference.

Behind both of them sit the two causes this topic names: the alleles an organism inherited, and the conditions it grew up in. You will learn how mutation creates something genuinely new while reproduction only reshuffles what already exists, why a suntan is never passed to a child, and why almost every characteristic you can actually see is the work of both causes together. Then you will handle the numbers, because on this course variation is as much a data skill as a biology one: building a frequency table, estimating a mean from grouped readings, choosing a sample that can carry a conclusion, and spotting the moment a claim runs further than the evidence behind it.

Awọn Afojusun

  1. The causes of variation include: genetic variation - different characteristics as a result of mutation or reproduction; environmental variation - different characteristics caused by an organism’s environmental (acquired characteristics).

Àwòrán ọpọlọ

A ti ṣe àwòrán kókó yìí kí o lè rí bí àwọn èrò ṣe so pọ̀.

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Akọ̀wé Ẹ̀kọ́

Every member of a species carries the same set of genes, yet no two individuals of that species are identical. Biologists call those differences variation, and the word covers everything from the length of a leaf to the presence of a single enzyme. What makes variation worth a lesson of its own is that it does not all have the same cause and it does not all have the same shape. Some characteristics sort a population into a handful of sharply bounded groups. Others refuse to be sorted at all and spread the population out along an unbroken scale. Telling those two patterns apart, and explaining what produces each one, is the skill this topic is really testing.

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Ìdánwò Ẹ̀kọ́

Oriire fun ipari ẹkọ lori Variation. Ni bayi ti o ti ṣawari naa awọn imọran bọtini ati awọn imọran, o to akoko lati fi imọ rẹ si idanwo. Ẹka yii nfunni ni ọpọlọpọ awọn adaṣe awọn ibeere ti a ṣe lati fun oye rẹ lokun ati ṣe iranlọwọ fun ọ lati ṣe iwọn oye ohun elo naa.

Iwọ yoo pade adalu awọn iru ibeere, pẹlu awọn ibeere olumulo pupọ, awọn ibeere idahun kukuru, ati awọn ibeere iwe kikọ. Gbogbo ibeere kọọkan ni a ṣe pẹlu iṣaro lati ṣe ayẹwo awọn ẹya oriṣiriṣi ti imọ rẹ ati awọn ogbon ironu pataki.

Lo ise abala yii gege bi anfaani lati mu oye re lori koko-ọrọ naa lagbara ati lati ṣe idanimọ eyikeyi agbegbe ti o le nilo afikun ikẹkọ. Maṣe jẹ ki awọn italaya eyikeyi ti o ba pade da ọ lójú; dipo, wo wọn gẹgẹ bi awọn anfaani fun idagbasoke ati ilọsiwaju.

  1. Which characteristic of a human population falls into separate groups with no intermediates? A. Body mass B. Hand span C. ABO blood group D. Height Answer: C
  2. An unbroken range of values for a characteristic in a population is usually caused by A. one gene only, with no environmental effect B. many genes together with environmental effects C. the environment only, with no genetic effect D. a single mutation in one individual Answer: B
  3. Which of these is an acquired characteristic? A. The ability to roll the tongue B. A suntan gained during a summer holiday C. Blood group A D. Brown eye colour Answer: B
  4. In a sample of 200 students, 90 were blood group O. What percentage of the sample was blood group O? A. 9% B. 22.5% C. 45% D. 90% Answer: C
  5. Which process is the original source of new alleles in a population? A. Sexual reproduction B. Asexual reproduction C. Mutation D. Environmental variation Answer: C

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