Concepts in BiologyWm. C. Brown Publishers, 1991 - 535 страница Concepts in Biology is a short, student-friendly text organized in a traditional manner. It has very little botany and presents a human-oriented approach to the animal unit. Professors and students appreciate the low cost of this title, and that it is written for students who are not biology majors. |
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Страница 255
... muscle cells to produce ATP may be glucose or glycogen , triglycerides or fatty acids . During a long , brisk walk , the heart and lungs of most people should be able to keep up with the muscle cells ' require- ment for oxygen . The ...
... muscle cells to produce ATP may be glucose or glycogen , triglycerides or fatty acids . During a long , brisk walk , the heart and lungs of most people should be able to keep up with the muscle cells ' require- ment for oxygen . The ...
Страница 275
... muscle Fasciculus Muscle fiber ( cell ) Nuclei Myofibrils Waldrop ( figure 14.17 ) . The mechanism by which muscle contracts is well understood and involves the movement of protein filaments past one another as ATP is utilized . The ...
... muscle Fasciculus Muscle fiber ( cell ) Nuclei Myofibrils Waldrop ( figure 14.17 ) . The mechanism by which muscle contracts is well understood and involves the movement of protein filaments past one another as ATP is utilized . The ...
Страница 277
... muscle are destroyed , the muscle becomes paralyzed and begins to shrink . Regular nervous stimulation of skeletal muscle is necessary for muscle to maintain size and strength . Any kind of prolonged inactivity leads to the degeneration of ...
... muscle are destroyed , the muscle becomes paralyzed and begins to shrink . Regular nervous stimulation of skeletal muscle is necessary for muscle to maintain size and strength . Any kind of prolonged inactivity leads to the degeneration of ...
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What Is Biology? | 2 |
What Is Biology? | 11 |
1 Edward Jenner and | 15 |
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activities allele amino acids amount animals atoms attached bacteria behavior biological body bonds called carbohydrates carbon dioxide cause cell membrane cellular cellular respiration centrioles changes chapter characteristics chemical chromatids complex contain cycle cytoplasm diet diploid disease ecosystem EeDd electrons energy environment enzyme eukaryotic example factors female fertilization Figure free earlobes function gametes gene frequencies gene pool genetic genotype glands glucose growth haploid homologous chromosomes hormones human hydrogen increase individual insects intestine involved ions kcalories kinds living things male materials meiosis metabolic mitosis mRNA muscle mutation neuron nitrogen normal nucleotides nucleus nutrients occur offspring oocyte organelles organic molecules ovary oxygen pair parasites PGAL phosphate photosynthesis plants population produce prokaryotic protein protons pyruvic acid reactions released reproduction respiration result ribosomes sexual species sperm stage structure substrate sugar surface synthesis trophic level vitamins X chromosome