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Electric Potential ( relate voltage to charges, electric field, and energy ) 3.
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Voltage is not the same as energy, but means the energy per unit charge.
| 0neutral
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Electrical charge, the electric field, energy and voltage, electrical current;
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Voltage is not the same as energy, but means the energy per unit charge.
| 0neutral
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Find the total potential energy stored in the capacitors after they have reached equilibrium (voltages are equal and lower than initial voltage, but the total charge is the same).
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Voltage is not the same as energy, but means the energy per unit charge.
| 0neutral
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If a large number of charges carry little energy with them, their voltage is low.
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Voltage is not the same as energy, but means the energy per unit charge.
| 0neutral
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In a typical renewable energy system, battery voltage constantly fluctuates with the state-of-charge.
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Voltage is not the same as energy, but means the energy per unit charge.
| 0neutral
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In order to have an energy, the voltage must be multiplied by a charge.
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Voltage is not the same as energy, but means the energy per unit charge.
| 0neutral
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More energy means more voltage over the HOT.
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Voltage is not the same as energy, but means the energy per unit charge.
| 0neutral
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Specifically, the concepts of voltage, current, charge, power, and energy will be reviewed.
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Voltage is not the same as energy, but means the energy per unit charge.
| 0neutral
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The battery supplies energy which raises charge from low to high voltage.
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Voltage is not the same as energy, but means the energy per unit charge.
| 0neutral
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The energy charge varies according to the voltage level and time periods of consumption.
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Voltage is not the same as energy, but means the energy per unit charge.
| 0neutral
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The measure of energy per unit charge is measured is called voltage (V) and the unit of measurement is called volts.
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Voltage is not the same as energy, but means the energy per unit charge.
| 1entails
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Therefor the voltage and charge flow will both change polarity together, leaving the energy flowing in the same direction during the change.
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Voltage is not the same as energy, but means the energy per unit charge.
| 0neutral
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This energy is used to charge the high-voltage capacitor.
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Voltage is not the same as energy, but means the energy per unit charge.
| 0neutral
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This law is based on the conservation of energy whereby voltage is defined as the energy per unit charge.
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Voltage is not the same as energy, but means the energy per unit charge.
| 0neutral
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Voltage is the measure of how much energy each unit of electric charge has and current is the measure of how many units of electric charge are flowing each second.
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Voltage is not the same as energy, but means the energy per unit charge.
| 1entails
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Voltage is the measure of potential energy per unit of charge , and is measured in Volts.
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Voltage is not the same as energy, but means the energy per unit charge.
| 1entails
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Voltage measures the energy per charge.
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Voltage is not the same as energy, but means the energy per unit charge.
| 1entails
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With the charge created by EHP, a voltage pulse is created which is proportional to the energy deposited.
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Voltage is not the same as energy, but means the energy per unit charge.
| 0neutral
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h that voltage is the energy transferred per unit charge;
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Voltage is not the same as energy, but means the energy per unit charge.
| 1entails
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In terms of energy transfer the higher voltage requirements to absorb the resonance frequencies of atomic shells means a corresponding lower current.
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Voltage is not the same as energy, but means the energy per unit charge.
| 0neutral
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T) in Tamil Nadu with a fixed wheeling charge at 15% in terms of energy in units irrespective of the distance and voltage of the service for which wheeling is done.
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Voltage is not the same as energy, but means the energy per unit charge.
| 0neutral
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The scientific term for a solar cell is photovoltaics, meaning the use of the photon, or the sun's energy, to create a voltage, or electricity.
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Voltage is not the same as energy, but means the energy per unit charge.
| 0neutral
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Voltage expresses the amount of energy expended per amount of electric charge.
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Voltage is not the same as energy, but means the energy per unit charge.
| 1entails
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Voltage is the energy per electric charge, it is measured in volts per coulomb.
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Voltage is not the same as energy, but means the energy per unit charge.
| 1entails
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A new solvent under development is used to remove the fission products simultaneously from the aqueous feed, and the loaded solvent is then stripped with a dilute aqueous solution, allowing the solvent to be recycled.
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Aqueous solution is used to describe a solution in which water is the solvent.
| 0neutral
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A term used to describe hydrogen ion activity in an aqueous solution;
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Aqueous solution is used to describe a solution in which water is the solvent.
| 0neutral
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An aqueous solution is a solution where the solvent is water.
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Aqueous solution is used to describe a solution in which water is the solvent.
| 1entails
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Aqueous a term used to indicate the presence of water in a solution (or watery).
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Aqueous solution is used to describe a solution in which water is the solvent.
| 1entails
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Certain transition-metal stabilized carbenes function as initiators and chain growth species in methathesis polymerization of cyclic olefins in aqueous or water-alcohol solution, one of the few cases in which an organometallic species can be used in protic solvents.
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Aqueous solution is used to describe a solution in which water is the solvent.
| 0neutral
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Corrosives of any type in aqueous solutions or with organic solvents.
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Aqueous solution is used to describe a solution in which water is the solvent.
| 0neutral
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Define the terms solution, aqueous solution, solute, and solvent.
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Aqueous solution is used to describe a solution in which water is the solvent.
| 0neutral
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Describe seven types of solutions in terms of the physical state of the solute and solvent.
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Aqueous solution is used to describe a solution in which water is the solvent.
| 0neutral
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Describe several solutions that you use everyday in terms of what is the solvent and what is the solute.
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Aqueous solution is used to describe a solution in which water is the solvent.
| 0neutral
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Describe the energy changes that occur in the solution process in terms of the solute-solute, solvent-solvent, and solute-solvent attractive forces;
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Aqueous solution is used to describe a solution in which water is the solvent.
| 0neutral
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For dilute aqueous solutions, the density of the solvent is approximately equal to the density of the solution;
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Aqueous solution is used to describe a solution in which water is the solvent.
| 0neutral
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In aqueous solution water is the solvent.
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Aqueous solution is used to describe a solution in which water is the solvent.
| 1entails
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Similarly, a water solution of maltose was extracted with the non-aqueous solvent.
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Aqueous solution is used to describe a solution in which water is the solvent.
| 0neutral
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The most common solution is the aqueous solution, which is formed when a substance (solute) is dissolved (known as solvation process) in water (solvent).
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Aqueous solution is used to describe a solution in which water is the solvent.
| 1entails
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We will normally discard the solution from which the precipitate is recovered Our solutions will normally be aqueous, i.e., the solvent will normally be water.
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Aqueous solution is used to describe a solution in which water is the solvent.
| 1entails
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an aqueous solution is made by using water as a solvent.
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Aqueous solution is used to describe a solution in which water is the solvent.
| 1entails
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aqueous solution A solution with water as the solvent.
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Aqueous solution is used to describe a solution in which water is the solvent.
| 1entails
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A raptor is a bird that hunts other animals.
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The term raptors is used to describe birds that hunt, eat mammals, and other birds.
| 1entails
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An analysis and thorough discussion of the data should be included by groups of animals (raptors, big game, other mammals, passerine birds, etc).
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The term raptors is used to describe birds that hunt, eat mammals, and other birds.
| 0neutral
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Any person using raptors to take game or nongame birds or mammals shall abide by all laws and regulations related to hunting, including but not limited to licenses, seasons, bag limits, and hunting hours.
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The term raptors is used to describe birds that hunt, eat mammals, and other birds.
| 0neutral
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Bald eagles often dominate over other mammals such as foxes and coyotes including birds such as vultures, gulls, corvids, and raptors.
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The term raptors is used to describe birds that hunt, eat mammals, and other birds.
| 0neutral
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Birds of prey, also known as raptors, hunt and feed on other animals.
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The term raptors is used to describe birds that hunt, eat mammals, and other birds.
| 1entails
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In addition, a person who releases a raptor at game birds or game mammals during the open season must possess a valid hunting license issued by the division.
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The term raptors is used to describe birds that hunt, eat mammals, and other birds.
| 0neutral
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One final note, cattle watering troughs can be raptor (and other bird and mammal) death traps.
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The term raptors is used to describe birds that hunt, eat mammals, and other birds.
| 0neutral
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(#2) Evolution: Changes in DNA, or mutations, cause new alleles to arise, leading to variation among organisms within a population (#7) Applications: Genetics research has applications in many different fields.
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Mutations are changes to an organism’s dna and are an important driver of diversity in populations.
| 1entails
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A mutation is any permanent change in an organism's DNA and thus change in offspring’s.
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Mutations are changes to an organism’s dna and are an important driver of diversity in populations.
| 1entails
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Anything that changes the DNA is called a mutation, and an organism with a mutation is called a mutant.
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Mutations are changes to an organism’s dna and are an important driver of diversity in populations.
| 1entails
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At a molecular level, the term mutation describes a change in sequence of nucleotides in the chromosonal DNA.
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Mutations are changes to an organism’s dna and are an important driver of diversity in populations.
| 1entails
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DNA changes in a gene are called mutations.
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Mutations are changes to an organism’s dna and are an important driver of diversity in populations.
| 1entails
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For most organisms, mutations inheritable changes in DNA provide raw material for evolution.
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Mutations are changes to an organism’s dna and are an important driver of diversity in populations.
| 1entails
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Mutation --any change in a DNA sequence.
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Mutations are changes to an organism’s dna and are an important driver of diversity in populations.
| 1entails
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Mutations are changes that happen to the DNA sequence.
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Mutations are changes to an organism’s dna and are an important driver of diversity in populations.
| 1entails
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The diversity among organisms has arisen through mutations , which are changes in the structure of DNA molecules.
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Mutations are changes to an organism’s dna and are an important driver of diversity in populations.
| 1entails
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The longer a population group has existed, the more diverse will be their DNA because more mutations will have occurred.
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Mutations are changes to an organism’s dna and are an important driver of diversity in populations.
| 1entails
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Tyson uses the Ship of the Imagination to show how DNA, genes, and mutation work, and how these led to the diversity of species as represented by the Tree of Life, including how complex organs such as the eye came about as a common element.
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Mutations are changes to an organism’s dna and are an important driver of diversity in populations.
| 0neutral
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Amines, amides, nitriles and nitro groups can be eliminated if the molecule does not contain any nitrogen.
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The term amines is used to describe molecules that contain carbon-nitrogen bonds.
| 0neutral
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An amine is an organic compound that contains a nitrogen atom bound only to carbon and possibly hydrogen atoms.
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The term amines is used to describe molecules that contain carbon-nitrogen bonds.
| 1entails
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Chitosan contains an amine group, or a group without carbons bonded to oxygen, whereas chitin contains an amide group, where this is the case.
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The term amines is used to describe molecules that contain carbon-nitrogen bonds.
| 0neutral
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The company cautions manufacturers against using this material with polymer systems that contain traces of amines, sulphur, nitrogen oxide, organotin compounds, or carbon monoxide because the combination can interfere with curing.
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The term amines is used to describe molecules that contain carbon-nitrogen bonds.
| 0neutral
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The ends of fatty acids have these suckers, which are COOH (carbon double bonded to an oxygen with a hydroxyl group off the carbon) Ethers Amines These contain nitrogen.
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The term amines is used to describe molecules that contain carbon-nitrogen bonds.
| 0neutral
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The term dipolar bond is used in organic chemistry for compounds such as amine oxides for which the electronic structure can be described in terms of the basic amine donating two electrons to an oxygen atom.
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The term amines is used to describe molecules that contain carbon-nitrogen bonds.
| 0neutral
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the ethyl is the two carbon chain, and the amine is the basic nitrogen.
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The term amines is used to describe molecules that contain carbon-nitrogen bonds.
| 0neutral
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Another Potential Energy: Elastic Energy .
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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Calculate elastic potential elastic potential energy.
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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Calculate elastic potential energy.
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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Calculate the elastic potential energy.
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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Determining the Wavefunction from the Potential Energy 6.1 Drawing Potential Energy Diagrams Potential energy diagrams will be used to describe the forces which act on small objects.
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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Elastic Potential Energy Calculator
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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Elastic Potential Energy and Restoring Force.
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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Elastic Potential Energy is stored energy that comes from deforming an object that will resume its previous shape.
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 1entails
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Elastic Potential Energy.
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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Elastic energy is a potential energy stored as a result of deformation of an elastic object, such as the stretching of a spring.
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 1entails
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Elastic potential energy 2.
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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Elastic potential energy is the potential energy of an elastic object (for example a bow or a catapult) that is deformed under tension or compression (or stressed in formal terminology).
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 1entails
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Introduction to Elastic Potential Energy with Examples
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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KE is used to deform an object to create elastic potential energy.
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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Potential energy is energy stored in an object.
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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Spring Potential Energy (Elastic Potential Energy)
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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The elastic potential energy equation is used in calculations of positions of mechanical equilibrium.
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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The internal energy is defined by specific potentials describing the elastic properties of the level-set.
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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This car was a "pull back" car, using elastic potential energy.
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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This information is used to calculate the elastic potential energy).
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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This is spring potential energy or elastic potential energy.
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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To be more precise, this is elastic potential energy .
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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where Ue is the elastic potential energy.
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
|
elastic potential => kinetic => electrical energy
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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The term "potential energy" (energy due to position or configuration) is not necessary, but if one does want to use it then there are five potential forms of energy: gravitational, elastic, electromagnetic, chemical, and nuclear. The unqualified term "potential energy" can be ambiguous.
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The term elastic potential energy is used to describe potential energy due to an object’s shape.
| 0neutral
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Analgesics Analogous Of structures (e.g., molecules, organs) in different species having similar function(s) but inherited from different precursors.
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The term analogous is used to describe structures that are similar in unrelated organisms.
| 1entails
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Analogous structures look similar and have the same function, even though they may be completely unrelated embryologically, such as the wing of a bat and the wing of a butterfly.
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The term analogous is used to describe structures that are similar in unrelated organisms.
| 1entails
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Conceptual change theorists use the term 'conceptions', again borrowed from Piaget (1972), to describe mental structures analogous to paradigms.
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The term analogous is used to describe structures that are similar in unrelated organisms.
| 0neutral
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The neuromuscular specification is in terms of articulatory structures analogous to those described by Fowler.
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The term analogous is used to describe structures that are similar in unrelated organisms.
| 0neutral
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We use many of the same terms for fungal reproduction that we use to describe analogous structures in plants.
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The term analogous is used to describe structures that are similar in unrelated organisms.
| 0neutral
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analogous Structures that have similar functions in two organisms but have not evolved from a common ancestral form.
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The term analogous is used to describe structures that are similar in unrelated organisms.
| 1entails
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Burns & flammability investigations.
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The term flammability is used to describe the ability of matter to burn.
| 0neutral
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FLAMMABLE, FLAMMABILITY Flammable means able to ignite and burn readily.
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The term flammability is used to describe the ability of matter to burn.
| 1entails
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Flammability Only slightly flammable, must be preheated to burn Flammable if moderately heated;
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The term flammability is used to describe the ability of matter to burn.
| 0neutral
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