polka-dot plant - Super Floral Retailing
... FERTILIZER Feed established plants with a balanced houseplant fertilizer, diluted by half, every two weeks. PROPAGATION Hypoestes can be propagated through stem cuttings or via seeds. PRUNING Pinch back stems as they grow too long, such as those longer than 10 ...
... FERTILIZER Feed established plants with a balanced houseplant fertilizer, diluted by half, every two weeks. PROPAGATION Hypoestes can be propagated through stem cuttings or via seeds. PRUNING Pinch back stems as they grow too long, such as those longer than 10 ...
100 Things to Know About Biology
... 20. If it ends in -ase, it is most likely an enzyme. 21. Photo- means "light"; -synthesis means "to make". You do the math! It is the basis of nutrition in autotrophs (those that AUTOmatically make their own food from CO2) 22. Plants grow best at the wavelength they are not (green doesn't work, red ...
... 20. If it ends in -ase, it is most likely an enzyme. 21. Photo- means "light"; -synthesis means "to make". You do the math! It is the basis of nutrition in autotrophs (those that AUTOmatically make their own food from CO2) 22. Plants grow best at the wavelength they are not (green doesn't work, red ...
Chapter 3: Ecosystems: What Are They and How Do They Work
... Chapter 3: Ecosystems: What Are They and How Do They Work? Case Study: Have you thanked the insects today? Insects have a bad reputation but perform many beneficial services for the environment. Many plants need insects to pollinate their flowers. Insects eat other insects controlling population siz ...
... Chapter 3: Ecosystems: What Are They and How Do They Work? Case Study: Have you thanked the insects today? Insects have a bad reputation but perform many beneficial services for the environment. Many plants need insects to pollinate their flowers. Insects eat other insects controlling population siz ...
Insert Essential Question Here
... • 6a. Students know that carbon, because of its ability to combine in many ways with itself and other elements, has a central role in the chemistry of living organisms. • 6b. Students know that living organisms are made of molecules consisting largely of carbon, hydrogen, nitrogen, oxygen, phosphoru ...
... • 6a. Students know that carbon, because of its ability to combine in many ways with itself and other elements, has a central role in the chemistry of living organisms. • 6b. Students know that living organisms are made of molecules consisting largely of carbon, hydrogen, nitrogen, oxygen, phosphoru ...
Honors BIOLOGY
... Citric Acid Cycle (aids in transferring an Acyl group rather than electrons) o Coenzyme Q (CoQ) which transfers electrons in the electron transport chain. aka: ubiquinone ...
... Citric Acid Cycle (aids in transferring an Acyl group rather than electrons) o Coenzyme Q (CoQ) which transfers electrons in the electron transport chain. aka: ubiquinone ...
Topic 1 - Danielle`s science9 weebly
... an area of high concentration to an area of low concentration. This action continues until the areas are equal concentrations. (No energy is required for this to occur). Water moves through plants by a special type of diffusion, called osmosis. In this process, water moves through the walls of the p ...
... an area of high concentration to an area of low concentration. This action continues until the areas are equal concentrations. (No energy is required for this to occur). Water moves through plants by a special type of diffusion, called osmosis. In this process, water moves through the walls of the p ...
5. CHAPTER XI PHOTOSYNTHESIS
... • Next is the regeneration of the beginning substrate, ribulose 1,5-bisphosphate. It is known as the photosynthetic carbon reduction cycle, or Calvin cycle. • A totally new molecule of glyceraldehyde 3-phosphate can be spun off with every three revolutions of the cycle. • The new glyceraldehyde 3-ph ...
... • Next is the regeneration of the beginning substrate, ribulose 1,5-bisphosphate. It is known as the photosynthetic carbon reduction cycle, or Calvin cycle. • A totally new molecule of glyceraldehyde 3-phosphate can be spun off with every three revolutions of the cycle. • The new glyceraldehyde 3-ph ...
Introduction to Ecology_HB
... • Carbon dioxide is cycled by green plants during the process known as photosynthesis to make organic molecules (glucose, which is food). – Carbon is emitted by the burning of fossil fuels. – Some carbon is stored for long periods of time in areas called carbon sinks. ...
... • Carbon dioxide is cycled by green plants during the process known as photosynthesis to make organic molecules (glucose, which is food). – Carbon is emitted by the burning of fossil fuels. – Some carbon is stored for long periods of time in areas called carbon sinks. ...
Respiratory System - University of St. Thomas
... Breathing - oxygen is inhaled Circulation - oxygen is carried to the cells Respiration - oxygen and sugar combine in a chemical reaction to release ENERGY Circulation - carbon dioxide is carried to the lungs Breathing - carbon dioxide is exhaled ...
... Breathing - oxygen is inhaled Circulation - oxygen is carried to the cells Respiration - oxygen and sugar combine in a chemical reaction to release ENERGY Circulation - carbon dioxide is carried to the lungs Breathing - carbon dioxide is exhaled ...
Notes - Humble ISD
... _________________, and __________________________. Carbon dioxide in the atmosphere is taken up by ____________ and _____________ for ___________________. (Algae are autotrophic, unicellular organisms with cell walls made of cellulose and chloroplasts that belong to kingdom ______________.). They pr ...
... _________________, and __________________________. Carbon dioxide in the atmosphere is taken up by ____________ and _____________ for ___________________. (Algae are autotrophic, unicellular organisms with cell walls made of cellulose and chloroplasts that belong to kingdom ______________.). They pr ...
NONVASCULAR PLANTS
... • Alteration of generations • Pt I: Gametophyte • Male plant makes sperm in the antheridium through mitosis • Female plant makes eggs in the archegonium through mitosis • Water brings sperm to the egg where they fuse to create a dipliod zygote which grows into a sporophyte • Pt II: Sporophyte • Spo ...
... • Alteration of generations • Pt I: Gametophyte • Male plant makes sperm in the antheridium through mitosis • Female plant makes eggs in the archegonium through mitosis • Water brings sperm to the egg where they fuse to create a dipliod zygote which grows into a sporophyte • Pt II: Sporophyte • Spo ...
Ecology Notes Powerpoint
... 1. All organisms require nitrogen to make amino acids, which in turn are used to build proteins. A. ...
... 1. All organisms require nitrogen to make amino acids, which in turn are used to build proteins. A. ...
2.1 Living Organisms.cwk (WP)
... 1. Energy: Animals get their energy from their food. What structures do different animals have to gather and use food? Most plants use the energy of the Sun to make their own food. What structures do plants have to make food? 2. Environment: Plants need light to make food, so they will bend toward a ...
... 1. Energy: Animals get their energy from their food. What structures do different animals have to gather and use food? Most plants use the energy of the Sun to make their own food. What structures do plants have to make food? 2. Environment: Plants need light to make food, so they will bend toward a ...
The Chemical Level of Organization
... • Law of conservation of energy – energy can neither be created nor destroyed--just converted from one form to another ...
... • Law of conservation of energy – energy can neither be created nor destroyed--just converted from one form to another ...
Multiple Choice Questions - Elmwood Park Public Schools
... A) the citric acid cycle. B) glycolysis. C) the electron transport system. D) fermentation. E) the preparatory reaction. 10. Which process produces both NADH and FADH2? A) the citric acid cycle B) glycolysis C) the electron transport system D) fermentation E) the preparatory reaction 11. Which proce ...
... A) the citric acid cycle. B) glycolysis. C) the electron transport system. D) fermentation. E) the preparatory reaction. 10. Which process produces both NADH and FADH2? A) the citric acid cycle B) glycolysis C) the electron transport system D) fermentation E) the preparatory reaction 11. Which proce ...
BIODIVERSITY OF PLANTS
... A measure of the number and abundance of different species living in a particular ecosystem Plants provide food and shelter for other organisms. Therefore if an ecosystem has a lot of different plant species, it will be able to support many different animal species. HIGH PLANT DIVERSITY = HIGH ANI ...
... A measure of the number and abundance of different species living in a particular ecosystem Plants provide food and shelter for other organisms. Therefore if an ecosystem has a lot of different plant species, it will be able to support many different animal species. HIGH PLANT DIVERSITY = HIGH ANI ...
File
... 6. Scientists studying ocean organisms are discovering new and unusual species. Which observation could be used to determine that an ocean organism is a plant cell? A) B) C) D) ...
... 6. Scientists studying ocean organisms are discovering new and unusual species. Which observation could be used to determine that an ocean organism is a plant cell? A) B) C) D) ...
Keystone Review by Topic/Module (2015) Name Module A Topic 1
... o pH: too acidic (low)/basic (high) will do the same thing as wrong temperature o Concentration: saturation is when the reaction rate has been maximized and adding more substrate will not increase the reaction rate ...
... o pH: too acidic (low)/basic (high) will do the same thing as wrong temperature o Concentration: saturation is when the reaction rate has been maximized and adding more substrate will not increase the reaction rate ...
Science Year 8 Learn Sheet DC4 – Respiration
... Aerobic respiration is a series of chemical reactions that can be summarized as: glucose + oxygen → carbon dioxide + water ...
... Aerobic respiration is a series of chemical reactions that can be summarized as: glucose + oxygen → carbon dioxide + water ...
How your body generate Energy
... 1. Lungs use the pumping action of the Heart to make our Body Respiration occur 2. Artery carries oxygenated blood to cell for cellular respiration ...
... 1. Lungs use the pumping action of the Heart to make our Body Respiration occur 2. Artery carries oxygenated blood to cell for cellular respiration ...
AP-Bio-exam-review-outline-may-2
... Non cyclic light reactions- ATP made by chemiosmosis, ATP synthase, H+ pump, NADPH, oxygen from photolysis (splitting of water) P700 and P680 NADPH and ATP needed for Calvin Cycle Chloroplasts, thylakoid membrane – light/stroma- dark Photosystem II (P680), photolysis, primary electron accept ...
... Non cyclic light reactions- ATP made by chemiosmosis, ATP synthase, H+ pump, NADPH, oxygen from photolysis (splitting of water) P700 and P680 NADPH and ATP needed for Calvin Cycle Chloroplasts, thylakoid membrane – light/stroma- dark Photosystem II (P680), photolysis, primary electron accept ...
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.