Students
... What are the characteristics of ferns (seedless vascular plants)? - Dominant life stage is sporophyte (2n) - Gametophyte is reduced - Sporophyte is branched - Vasculature - Xylem – transports water & minerals up from the ground - Has tracheids – tube-shaped cells for transport - Dead at maturity - S ...
... What are the characteristics of ferns (seedless vascular plants)? - Dominant life stage is sporophyte (2n) - Gametophyte is reduced - Sporophyte is branched - Vasculature - Xylem – transports water & minerals up from the ground - Has tracheids – tube-shaped cells for transport - Dead at maturity - S ...
Chap 7 PP
... only ATP (rather than food) as a direct source of energy. The energy contained in food—glucose in the example—is transferred to ATP in three major steps: glycolysis, the Krebs cycle, and the electron transport chain. Though glycolysis and the Krebs cycle contribute only small amounts of ATP directly ...
... only ATP (rather than food) as a direct source of energy. The energy contained in food—glucose in the example—is transferred to ATP in three major steps: glycolysis, the Krebs cycle, and the electron transport chain. Though glycolysis and the Krebs cycle contribute only small amounts of ATP directly ...
An Overview on Respiratory System
... External respiration Exchange of O2 & CO2 between external environment & the cells of the body. Efficient because alveoli and capillaries have very thin walls & are very abundant (your lungs have about 300 million alveoli with a total surface area of about 75 square meters). Internal respira ...
... External respiration Exchange of O2 & CO2 between external environment & the cells of the body. Efficient because alveoli and capillaries have very thin walls & are very abundant (your lungs have about 300 million alveoli with a total surface area of about 75 square meters). Internal respira ...
General and Organic Chemistry Review Primer
... the number of protons and neutrons. Calculating an element’s mass number is complicated by the existence of isotopes, atoms of an element with the same number of protons but different numbers of neutrons. Many naturally occurring elements exist as a mixture of isotopes. For example, carbon has three ...
... the number of protons and neutrons. Calculating an element’s mass number is complicated by the existence of isotopes, atoms of an element with the same number of protons but different numbers of neutrons. Many naturally occurring elements exist as a mixture of isotopes. For example, carbon has three ...
160 worksheet 16-key
... 3. Mutualisms fall into three categories: dispersive, defensive, and trophic. For each, describe the nature of the mutualism and give an example. Dispersive A dispersive mutualism is when one species in the partnership disperses the propagules (e.g., seeds, pollen, etc.) of the other and in ...
... 3. Mutualisms fall into three categories: dispersive, defensive, and trophic. For each, describe the nature of the mutualism and give an example. Dispersive A dispersive mutualism is when one species in the partnership disperses the propagules (e.g., seeds, pollen, etc.) of the other and in ...
Oxidative degradation of glucose File
... • The high-energy phosphate of phosphoenol pyruvate is transferred to ADP by the enzyme pyruvate kinase to generate, at this stage, two molecules of ATP per molecule of glucose oxidized and enolpyruvate is formed. • Enolpyruvate formed is converted spontaneousny to the keto form pyruvate. This is an ...
... • The high-energy phosphate of phosphoenol pyruvate is transferred to ADP by the enzyme pyruvate kinase to generate, at this stage, two molecules of ATP per molecule of glucose oxidized and enolpyruvate is formed. • Enolpyruvate formed is converted spontaneousny to the keto form pyruvate. This is an ...
THE CITRIC ACID CYCLE
... • Compare to ATP phosphate hydrolysis at -30 kJ/mole • We preserve that energy by making GTP • This reaction utilizes a swinging histidine side chain to transfer the PO42- group from succinyl phosphate to ...
... • Compare to ATP phosphate hydrolysis at -30 kJ/mole • We preserve that energy by making GTP • This reaction utilizes a swinging histidine side chain to transfer the PO42- group from succinyl phosphate to ...
part_4_cellular_respiration_stations
... requires oxygen to release ATP energy from food. Most organisms such as animals (heterotrophs) and plants (autotrophs) use aerobic respiration. Aerobic respiration requires six molecules of oxygen and 1 glucose molecule, a type of carbohydrate or sugar. For just 1 glucose molecule, aerobic respirati ...
... requires oxygen to release ATP energy from food. Most organisms such as animals (heterotrophs) and plants (autotrophs) use aerobic respiration. Aerobic respiration requires six molecules of oxygen and 1 glucose molecule, a type of carbohydrate or sugar. For just 1 glucose molecule, aerobic respirati ...
Pathways of Carbohydrate and Lipid Metabolism Glycolysis • Is the
... which gives you a net total of 2 ATP molecules • Also have 2 NADH molecules made • In glycolysis, 7 out of the 10 steps are at equilibrium and thus are reversible • Although, 3 out of 10 are NOT reversible (one directional arrow in diagrams above). They are: Glucose to Glucose 6-phosphate via hexo ...
... which gives you a net total of 2 ATP molecules • Also have 2 NADH molecules made • In glycolysis, 7 out of the 10 steps are at equilibrium and thus are reversible • Although, 3 out of 10 are NOT reversible (one directional arrow in diagrams above). They are: Glucose to Glucose 6-phosphate via hexo ...
important facts and handy facts physics chapters. motion and electric
... water vapour. When water vapour changes back to water due to condensation, the heat is released to atmosphere and warms the air around. Then the hot air rises up causing a drop in pressure. More air from surrounding regions not only rushes in but also starts spiraling. This cycle is repeated. This c ...
... water vapour. When water vapour changes back to water due to condensation, the heat is released to atmosphere and warms the air around. Then the hot air rises up causing a drop in pressure. More air from surrounding regions not only rushes in but also starts spiraling. This cycle is repeated. This c ...
3. Feedback mechanisms control cellular respiration
... Fermentation allows some cells to produce ATP without the help of oxygen ...
... Fermentation allows some cells to produce ATP without the help of oxygen ...
The Smallest Unit of Life - Mona Shores Online Learning Center
... – like tiny organs in cells – carry out specialized jobs – Most cells have same organelles, but some only found in specific type of cells ...
... – like tiny organs in cells – carry out specialized jobs – Most cells have same organelles, but some only found in specific type of cells ...
Human photosynthesis, the ultimate answer to the long term mystery
... Living beings are capable of not only generating order from disordered matter but also replicating themselves with great fidelity. In both cases, there are two important requirements, the energy and the building blocks or carbon chains. The metabolisms of living organisms are intricate. They utilize ...
... Living beings are capable of not only generating order from disordered matter but also replicating themselves with great fidelity. In both cases, there are two important requirements, the energy and the building blocks or carbon chains. The metabolisms of living organisms are intricate. They utilize ...
H +
... How do the electrons get shuttled down the ETC? How is electronegativity involved? What molecule is the final acceptor of the electrons? What is the byproduct that is generated during the ETC? The ETC does not generate ATP. What is it’s purpose? ...
... How do the electrons get shuttled down the ETC? How is electronegativity involved? What molecule is the final acceptor of the electrons? What is the byproduct that is generated during the ETC? The ETC does not generate ATP. What is it’s purpose? ...
225 Unit 7, Lab 1 - Pope John Paul II High School
... Dalton's law of definite proportions holds true for all chemical reactions. In essence, this law states that a chemical reaction always proceeds according to the ratio defined by the balanced chemical equation. Thus, you can interpret the balanced methane equation above as reading, "one part methan ...
... Dalton's law of definite proportions holds true for all chemical reactions. In essence, this law states that a chemical reaction always proceeds according to the ratio defined by the balanced chemical equation. Thus, you can interpret the balanced methane equation above as reading, "one part methan ...
Citric acid cycle ELECTRON TRANSPORT CHAIN AND
... • Proteins can be digested to amino acids, which are chemically altered and then used in the citric acid cycle • Fats are broken up and fed into glycolysis and the citric acid cycle Copyright © 2003 Pearson Education, Inc. publishing as Benjamin Cummings ...
... • Proteins can be digested to amino acids, which are chemically altered and then used in the citric acid cycle • Fats are broken up and fed into glycolysis and the citric acid cycle Copyright © 2003 Pearson Education, Inc. publishing as Benjamin Cummings ...
pH and enzymes in cheese making File
... fits the enzyme shape this is called the active site of the enzyme ...
... fits the enzyme shape this is called the active site of the enzyme ...
Populations and environment January 2013
... AQA retains the copyright on all its publications. However, registered schools/colleges for AQA are permitted to copy material from this booklet for their own internal use, with the following important exception: AQA cannot give permission to schools/colleges to photocopy any material that is acknow ...
... AQA retains the copyright on all its publications. However, registered schools/colleges for AQA are permitted to copy material from this booklet for their own internal use, with the following important exception: AQA cannot give permission to schools/colleges to photocopy any material that is acknow ...
BIOL 1407 - Ranger College
... Regular and punctual attendance in all classes and labs is considered essential for optimum academic success. If the student has the equivalence of three weeks of unofficial absences . . . the instructor may drop the student from the course with a grade of F (Ranger College General Catalog ). Studen ...
... Regular and punctual attendance in all classes and labs is considered essential for optimum academic success. If the student has the equivalence of three weeks of unofficial absences . . . the instructor may drop the student from the course with a grade of F (Ranger College General Catalog ). Studen ...
Photosynthesis
Photosynthesis is a process used by plants and other organisms to convert light energy, normally from the Sun, into chemical energy that can be later released to fuel the organisms' activities. This chemical energy is stored in carbohydrate molecules, such as sugars, which are synthesized from carbon dioxide and water – hence the name photosynthesis, from the Greek φῶς, phōs, ""light"", and σύνθεσις, synthesis, ""putting together"". In most cases, oxygen is also released as a waste product. Most plants, most algae, and cyanobacteria perform photosynthesis; such organisms are called photoautotrophs. Photosynthesis maintains atmospheric oxygen levels and supplies all of the organic compounds and most of the energy necessary for life on Earth.Although photosynthesis is performed differently by different species, the process always begins when energy from light is absorbed by proteins called reaction centres that contain green chlorophyll pigments. In plants, these proteins are held inside organelles called chloroplasts, which are most abundant in leaf cells, while in bacteria they are embedded in the plasma membrane. In these light-dependent reactions, some energy is used to strip electrons from suitable substances, such as water, producing oxygen gas. Furthermore, two further compounds are generated: reduced nicotinamide adenine dinucleotide phosphate (NADPH) and adenosine triphosphate (ATP), the ""energy currency"" of cells.In plants, algae and cyanobacteria, sugars are produced by a subsequent sequence of light-independent reactions called the Calvin cycle, but some bacteria use different mechanisms, such as the reverse Krebs cycle. In the Calvin cycle, atmospheric carbon dioxide is incorporated into already existing organic carbon compounds, such as ribulose bisphosphate (RuBP). Using the ATP and NADPH produced by the light-dependent reactions, the resulting compounds are then reduced and removed to form further carbohydrates, such as glucose.The first photosynthetic organisms probably evolved early in the evolutionary history of life and most likely used reducing agents, such as hydrogen or hydrogen sulfide, as sources of electrons, rather than water. Cyanobacteria appeared later; the excess oxygen they produced contributed to the oxygen catastrophe, which rendered the evolution of complex life possible. Today, the average rate of energy capture by photosynthesis globally is approximately 130 terawatts, which is about three times the current power consumption of human civilization.Photosynthetic organisms also convert around 100–115 thousand million metric tonnes of carbon into biomass per year.