• https://en.wikipedia.org/wiki/Dama_(genus)
    https://en.wikipedia.org/wiki/Dama_(genus)
    EN.WIKIPEDIA.ORG
    Dama (genus)
    Dama is a genus of deer in the subfamily Cervinae, commonly referred to as fallow deer. Name The name fallow is derived from the deer's pale brown colour. The Latin word dāma or damma, used for roe deer, gazelles, and antelopes, lies at the root of the modern scientific name, as well as the German Damhirsch, French daim, Dutch damhert, and Italian daino. In Croatian and Serbian, the name for the fallow deer is jelen lopatar ("shovel deer"), due to the form of its antlers. The Modern Hebrew name of the fallow deer is yachmur (יחמור). Taxonomy and evolution The genus includes two extant species: Extant species Some taxonomists classify the Persian fallow deer as a subspecies (D. d. mesopotamica), while others, such as the IUCN, treat it as a separate species (D. mesopotamica). References
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  • CHATGPT AI
    Clinton Eastwood


    Clint Eastwood is an American actor, filmmaker, musician, and political figure. He rose to international fame with his role as the Man with No Name in Sergio Leone's Dollars Trilogy of spaghetti Westerns during the 1960s and as antihero cop Harry Callahan in the five Dirty Harry films throughout the 1970s and 1980s. He has also directed many successful films, including Unforgiven (1992), Million Dollar Baby (2004), and Gran Torino (2008). He has been involved in politics since the 1970s, when he was mayor of Carmel-by-the-Sea, California. In 2020 he endorsed Donald Trump for re-election.
    Clint Eastwood is an American actor, filmmaker, musician, and political figure. He rose to international fame with his role as the Man with No Name in Sergio Leone's Dollars Trilogy of spaghetti Westerns during the 1960s and as antihero cop Harry Callahan in the five Dirty Harry films throughout the 1970s and 1980s. He has also directed many successful films, including Unforgiven (1992), Million Dollar Baby (2004), and Gran Torino (2008). He has been involved in politics since the 1970s, when he was mayor of Carmel-by-the-Sea, California. In 2020 he endorsed Donald Trump for re-election.
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  • https://en.wikipedia.org/wiki/Clint_Eastwood
    https://en.wikipedia.org/wiki/Clint_Eastwood
    EN.WIKIPEDIA.ORG
    Clint Eastwood
    Clinton Eastwood Jr. (born May 31, 1930) is an American actor and filmmaker. After achieving success in the Western TV series Rawhide, he rose to international fame with his role as the "Man with No Name" in Sergio Leone's "Dollars Trilogy" of Spaghetti Westerns during the mid-1960s and as antihero cop Harry Callahan in the five Dirty Harry films throughout the 1970s and 1980s. These roles, among others, have made Eastwood an enduring cultural icon of masculinity. Elected in 1986, Eastwood served for two years as the mayor of Carmel-by-the-Sea, California. His greatest commercial successes are the adventure comedy Every Which Way but Loose (1978) and its action comedy sequel Any Which Way You Can (1980). Other popular Eastwood films include the Westerns Hang 'Em High (1968) and Pale Rider (1985), the action-war film Where Eagles Dare (1968), the prison film Escape from Alcatraz (1979), the war film Heartbreak Ridge (1986), the action film In the Line...
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    Across the Spider-Verse(Spider-Man)


    1. Into the Spider-Verse (2018): Miles Morales, a Brooklyn teen, gains spider-like abilities and joins forces with other Spider-Men from alternate universes to battle the Kingpin.

    2. Spider-Man: Homecoming (2017): Peter Parker balances his life as an ordinary high school student in Queens with his superhero alter-ego Spider-Man, and must confront a new menace prowling the skies of New York City.

    3. The Amazing Spider-Man (2012): Peter Parker finds a clue that might help him understand why his parents disappeared when he was young. His path puts him on a collision course with Dr. Curt Connors, his father's former partner.

    4. Spider-Man 3 (2007): A strange black entity from another world bonds with Peter Parker and causes inner turmoil as he contends with new villains, temptations, and revenge.

    5. Spider-Man 2 (2004): Peter Parker is beset with troubles in his failing personal life as he battles a brilliant scientist named Doctor Otto Octavius.
    1. Into the Spider-Verse (2018): Miles Morales, a Brooklyn teen, gains spider-like abilities and joins forces with other Spider-Men from alternate universes to battle the Kingpin. 2. Spider-Man: Homecoming (2017): Peter Parker balances his life as an ordinary high school student in Queens with his superhero alter-ego Spider-Man, and must confront a new menace prowling the skies of New York City. 3. The Amazing Spider-Man (2012): Peter Parker finds a clue that might help him understand why his parents disappeared when he was young. His path puts him on a collision course with Dr. Curt Connors, his father's former partner. 4. Spider-Man 3 (2007): A strange black entity from another world bonds with Peter Parker and causes inner turmoil as he contends with new villains, temptations, and revenge. 5. Spider-Man 2 (2004): Peter Parker is beset with troubles in his failing personal life as he battles a brilliant scientist named Doctor Otto Octavius.
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  • https://en.wikipedia.org/wiki/Spider-Man:_Across_the_Spider-Verse
    https://en.wikipedia.org/wiki/Spider-Man:_Across_the_Spider-Verse
    EN.WIKIPEDIA.ORG
    Spider-Man: Across the Spider-Verse
    Spider-Man: Across the Spider-Verse is a 2023 American computer-animated superhero film featuring the Marvel Comics character Miles Morales / Spider-Man. Produced by Columbia Pictures and Sony Pictures Animation in association with Marvel Entertainment, and distributed by Sony Pictures Releasing, it is the sequel to Spider-Man: Into the Spider-Verse (2018) and is set in a shared multiverse of alternate universes called the "Spider-Verse". The film is directed by Joaquim Dos Santos, Kemp Powers, and Justin K. Thompson (in their feature directorial debuts), from a screenplay written by Phil Lord, Christopher Miller, and David Callaham. Shameik Moore voices Miles, starring alongside Hailee Steinfeld, Brian Tyree Henry, Luna Lauren Vélez, Jake Johnson, Jason Schwartzman, Issa Rae, Karan Soni, Daniel Kaluuya and Oscar Isaac. In the film, Miles goes on an adventure with Gwen Stacy / Spider-Woman across the multiverse where he meets a new team of Spider-People, known as the Spider-Society, led by Miguel O' Hara / Spider-Man 2099, but comes into conflict with them over handling a new threat. Sony began developing a sequel to ...
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    George W. Bush Quote(Freedom)


    "Freedom is the universal gift of Almighty God, and it is our duty and honor to protect it." - George W. Bush
    "Freedom is the universal gift of Almighty God, and it is our duty and honor to protect it." - George W. Bush
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  • https://en.wikiquote.org/wiki/Freedom
    https://en.wikiquote.org/wiki/Freedom
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  • https://en.wikipedia.org/wiki/Luigi
    https://en.wikipedia.org/wiki/Luigi
    EN.WIKIPEDIA.ORG
    Luigi
    Luigi (Japanese: ルイージ, Hepburn: Ruīji, pronounced [ɾɯ.iːʑi]; English: loo-EE-jee, Italian: [luˈiːdʒi]) is a fictional character featured in video games and related media released by Nintendo. Created by Japanese video game designer Shigeru Miyamoto, Luigi is portrayed as the younger fraternal twin brother and sidekick of Mario. Defined by his kind-hearted, yet cowardly demeanor, Luigi appears in many games throughout the Mario franchise, oftentimes accompanying his brother. Luigi first appeared in the 1983 Game & Watch game Mario Bros., where he is the character controlled by the second player. He would retain this role in many future games, including Mario Bros...
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  • #Science_News #Science #Electric_field #Physics

    An electric field (sometimes E-field) is the physical field that surrounds electrically charged particles and exerts force on all other charged particles in the field, either attracting or repelling them. It also refers to the physical field for a system of charged particles. Electric fields originate from electric charges and time-varying electric currents. Electric fields and magnetic fields are both manifestations of the electromagnetic field, one of the four fundamental interactions (also called forces) of nature.

    Electric fields are important in many areas of physics, and are exploited in electrical technology. In atomic physics and chemistry, for instance, the electric field is the attractive force holding the atomic nucleus and electrons together in atoms. It is also the force responsible for chemical bonding between atoms that result in molecules.

    The electric field is defined as a vector field that associates to each point in space the electrostatic (Coulomb) force per unit of charge exerted on an infinitesimal positive test charge at rest at that point. The derived SI unit for the electric field is the volt per meter (V/m), which is equal to the newton per coulomb (N/C).

    Description :

    The electric field is defined at each point in space as the force per unit charge that would be experienced by a vanishingly small positive test charge if held stationary at that point. As the electric field is defined in terms of force, and force is a vector (i.e. having both magnitude and direction), it follows that an electric field is a vector field.  Fields that may be defined in this manner are sometimes referred to as force fields. The electric field acts between two charges similarly to the way the gravitational field acts between two masses, as they both obey an inverse-square law with distance. This is the basis for Coulomb's law, which states that, for stationary charges, the electric field varies with the source charge and varies inversely with the square of the distance from the source. This means that if the source charge were doubled, the electric field would double, and if you move twice as far away from the source, the field at that point would be only one-quarter its original strength.

    The electric field can be visualized with a set of lines whose direction at each point is the same as the field's, a concept introduced by Michael Faraday, whose term 'lines of force' is still sometimes used. This illustration has the useful property that the field's strength is proportional to the density of the lines. Field lines due to stationary charges have several important properties, including always originating from positive charges and terminating at negative charges, they enter all good conductors at right angles, and they never cross or close in on themselves.  The field lines are a representative concept; the field actually permeates all the intervening space between the lines. More or fewer lines may be drawn depending on the precision to which it is desired to represent the field. The study of electric fields created by stationary charges is called electrostatics.

    Faraday's law describes the relationship between a time-varying magnetic field and the electric field. One way of stating Faraday's law is that the curl of the electric field is equal to the negative time derivative of the magnetic field.  In the absence of time-varying magnetic field, the electric field is therefore called conservative (i.e. curl-free).  This implies there are two kinds of electric fields: electrostatic fields and fields arising from time-varying magnetic fields.  While the curl-free nature of the static electric field allows for a simpler treatment using electrostatics, time-varying magnetic fields are generally treated as a component of a unified electromagnetic field. The study of time varying magnetic and electric fields is called electrodynamics.
    #Science_News #Science #Electric_field #Physics An electric field (sometimes E-field) is the physical field that surrounds electrically charged particles and exerts force on all other charged particles in the field, either attracting or repelling them. It also refers to the physical field for a system of charged particles. Electric fields originate from electric charges and time-varying electric currents. Electric fields and magnetic fields are both manifestations of the electromagnetic field, one of the four fundamental interactions (also called forces) of nature. Electric fields are important in many areas of physics, and are exploited in electrical technology. In atomic physics and chemistry, for instance, the electric field is the attractive force holding the atomic nucleus and electrons together in atoms. It is also the force responsible for chemical bonding between atoms that result in molecules. The electric field is defined as a vector field that associates to each point in space the electrostatic (Coulomb) force per unit of charge exerted on an infinitesimal positive test charge at rest at that point. The derived SI unit for the electric field is the volt per meter (V/m), which is equal to the newton per coulomb (N/C). Description : The electric field is defined at each point in space as the force per unit charge that would be experienced by a vanishingly small positive test charge if held stationary at that point. As the electric field is defined in terms of force, and force is a vector (i.e. having both magnitude and direction), it follows that an electric field is a vector field.  Fields that may be defined in this manner are sometimes referred to as force fields. The electric field acts between two charges similarly to the way the gravitational field acts between two masses, as they both obey an inverse-square law with distance. This is the basis for Coulomb's law, which states that, for stationary charges, the electric field varies with the source charge and varies inversely with the square of the distance from the source. This means that if the source charge were doubled, the electric field would double, and if you move twice as far away from the source, the field at that point would be only one-quarter its original strength. The electric field can be visualized with a set of lines whose direction at each point is the same as the field's, a concept introduced by Michael Faraday, whose term 'lines of force' is still sometimes used. This illustration has the useful property that the field's strength is proportional to the density of the lines. Field lines due to stationary charges have several important properties, including always originating from positive charges and terminating at negative charges, they enter all good conductors at right angles, and they never cross or close in on themselves.  The field lines are a representative concept; the field actually permeates all the intervening space between the lines. More or fewer lines may be drawn depending on the precision to which it is desired to represent the field. The study of electric fields created by stationary charges is called electrostatics. Faraday's law describes the relationship between a time-varying magnetic field and the electric field. One way of stating Faraday's law is that the curl of the electric field is equal to the negative time derivative of the magnetic field.  In the absence of time-varying magnetic field, the electric field is therefore called conservative (i.e. curl-free).  This implies there are two kinds of electric fields: electrostatic fields and fields arising from time-varying magnetic fields.  While the curl-free nature of the static electric field allows for a simpler treatment using electrostatics, time-varying magnetic fields are generally treated as a component of a unified electromagnetic field. The study of time varying magnetic and electric fields is called electrodynamics.
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  • https://en.wikipedia.org/wiki/Electric_field
    https://en.wikipedia.org/wiki/Electric_field
    EN.WIKIPEDIA.ORG
    Electric field
    An electric field (sometimes E-field) is the physical field that surrounds electrically charged particles and exerts force on all other charged particles in the field, either attracting or repelling them. It also refers to the physical field for a system of charged particles. Electric fields originate from electric charges and time-varying electric currents. Electric fields and magnetic fields are both manifestations of the electromagnetic field, one of the four fundamental interactions (also called forces) of nature. Electric fields are important in many areas of physics, and are exploited in electrical technology. In atomic physics and chemistry, for instance, the electric field is the attractive force holding the atomic nucleus and electrons together in atoms. It is also the force responsible for chemical bonding between atoms that result in molecules. The electric field is defined as a vector field that associates to each point in space the electrostatic (Coulomb) force per unit of charge exerted on an infinitesimal positive test charge at rest at that point. The derived SI unit for the electric field is the volt per meter (V/m), which is equal to...
    0 Comments & Tags 0 Compartilhamentos 1 Visualizações

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