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#upgoer5 — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #upgoer5, aggregated by home.social.

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  1. Describing what I do, using only the 1000 most popular words in the English language:

    "Running computers to help people learn from large tables of numbers and words made by humans. Showing people how to run these computers to allow other people to also learn from other tables, and sharing this with everyone."

    splasho.com/upgoer5/
    #upgoer #upgoer5

  2. Describing what I do, using only the 1000 most popular words in the English language:

    "Running computers to help people learn from large tables of numbers and words made by humans. Showing people how to run these computers to allow other people to also learn from other tables, and sharing this with everyone."

    splasho.com/upgoer5/
    #upgoer #upgoer5

  3. Describing what I do, using only the 1000 most popular words in the English language:

    "Running computers to help people learn from large tables of numbers and words made by humans. Showing people how to run these computers to allow other people to also learn from other tables, and sharing this with everyone."

    splasho.com/upgoer5/

  4. Describing what I do, using only the 1000 most popular words in the English language:

    "Running computers to help people learn from large tables of numbers and words made by humans. Showing people how to run these computers to allow other people to also learn from other tables, and sharing this with everyone."

    splasho.com/upgoer5/
    #upgoer #upgoer5

  5. Describing what I do, using only the 1000 most popular words in the English language:

    "Running computers to help people learn from large tables of numbers and words made by humans. Showing people how to run these computers to allow other people to also learn from other tables, and sharing this with everyone."

    splasho.com/upgoer5/
    #upgoer #upgoer5

  6. The ground we live on is the top of a moving rock area that is really hot. The ground we live on is broken up into little rocks. Sometimes the little rocks move on top of each other. This makes the rocks get really tall. Sometimes one goes under the other one. The under rock gets really hot and becomes the moving rock under the ground. The moving rock under us sometimes comes up through the ground making new hot rock. [J. G.]
    #PlateTectonics #UpGoer5 #EarthSystemScience #McGillUniversity

  7. The ground we live on is the top of a moving rock area that is really hot. The ground we live on is broken up into little rocks. Sometimes the little rocks move on top of each other. This makes the rocks get really tall. Sometimes one goes under the other one. The under rock gets really hot and becomes the moving rock under the ground. The moving rock under us sometimes comes up through the ground making new hot rock. [J. G.]

  8. The ground we live on is the top of a moving rock area that is really hot. The ground we live on is broken up into little rocks. Sometimes the little rocks move on top of each other. This makes the rocks get really tall. Sometimes one goes under the other one. The under rock gets really hot and becomes the moving rock under the ground. The moving rock under us sometimes comes up through the ground making new hot rock. [J. G.]
    #PlateTectonics #UpGoer5 #EarthSystemScience #McGillUniversity

  9. The ground we live on is the top of a moving rock area that is really hot. The ground we live on is broken up into little rocks. Sometimes the little rocks move on top of each other. This makes the rocks get really tall. Sometimes one goes under the other one. The under rock gets really hot and becomes the moving rock under the ground. The moving rock under us sometimes comes up through the ground making new hot rock. [J. G.]
    #PlateTectonics #UpGoer5 #EarthSystemScience #McGillUniversity

  10. The ground we live on is the top of a moving rock area that is really hot. The ground we live on is broken up into little rocks. Sometimes the little rocks move on top of each other. This makes the rocks get really tall. Sometimes one goes under the other one. The under rock gets really hot and becomes the moving rock under the ground. The moving rock under us sometimes comes up through the ground making new hot rock. [J. G.]
    #PlateTectonics #UpGoer5 #EarthSystemScience #McGillUniversity

  11. Upon death, living things either break down as the surrounding air, in a way, quickly eats up what is left of them or, they get covered under ground when not broken down. As the ground layer above gets bigger and heavier, the remains are pressed into a different and thicker form of matter. It takes a lot of time for the ground layer to grow heavy enough to change the state of the matter in such a way. Those old remains can then be burnt for power.
    [V. B.]
    #FossilFuels #UpGoer5 #McGillUniversity

  12. Upon death, living things either break down as the surrounding air, in a way, quickly eats up what is left of them or, they get covered under ground when not broken down. As the ground layer above gets bigger and heavier, the remains are pressed into a different and thicker form of matter. It takes a lot of time for the ground layer to grow heavy enough to change the state of the matter in such a way. Those old remains can then be burnt for power.
    [V. B.]

  13. Upon death, living things either break down as the surrounding air, in a way, quickly eats up what is left of them or, they get covered under ground when not broken down. As the ground layer above gets bigger and heavier, the remains are pressed into a different and thicker form of matter. It takes a lot of time for the ground layer to grow heavy enough to change the state of the matter in such a way. Those old remains can then be burnt for power.
    [V. B.]
    #FossilFuels #UpGoer5 #McGillUniversity

  14. Upon death, living things either break down as the surrounding air, in a way, quickly eats up what is left of them or, they get covered under ground when not broken down. As the ground layer above gets bigger and heavier, the remains are pressed into a different and thicker form of matter. It takes a lot of time for the ground layer to grow heavy enough to change the state of the matter in such a way. Those old remains can then be burnt for power.
    [V. B.]
    #FossilFuels #UpGoer5 #McGillUniversity

  15. Upon death, living things either break down as the surrounding air, in a way, quickly eats up what is left of them or, they get covered under ground when not broken down. As the ground layer above gets bigger and heavier, the remains are pressed into a different and thicker form of matter. It takes a lot of time for the ground layer to grow heavy enough to change the state of the matter in such a way. Those old remains can then be burnt for power.
    [V. B.]
    #FossilFuels #UpGoer5 #McGillUniversity

  16. The really big ball that we live on is made of huge pieces of ground that move around. Sometimes they knock into each other, run away from each other, or slip side to side. If two of them get stuck, power builds up in the rock and lets go as they are set free. The ground shakes a lot, large cracks form, rocks might slip down, and houses fall. If that happens in the big water area, a very tall wave will move onto the land and run into it. [M. T.]
    #Earthquake #UpGoer5 #McGillUniversity

  17. The really big ball that we live on is made of huge pieces of ground that move around. Sometimes they knock into each other, run away from each other, or slip side to side. If two of them get stuck, power builds up in the rock and lets go as they are set free. The ground shakes a lot, large cracks form, rocks might slip down, and houses fall. If that happens in the big water area, a very tall wave will move onto the land and run into it. [M. T.]

  18. The really big ball that we live on is made of huge pieces of ground that move around. Sometimes they knock into each other, run away from each other, or slip side to side. If two of them get stuck, power builds up in the rock and lets go as they are set free. The ground shakes a lot, large cracks form, rocks might slip down, and houses fall. If that happens in the big water area, a very tall wave will move onto the land and run into it. [M. T.]
    #Earthquake #UpGoer5 #McGillUniversity

  19. The really big ball that we live on is made of huge pieces of ground that move around. Sometimes they knock into each other, run away from each other, or slip side to side. If two of them get stuck, power builds up in the rock and lets go as they are set free. The ground shakes a lot, large cracks form, rocks might slip down, and houses fall. If that happens in the big water area, a very tall wave will move onto the land and run into it. [M. T.]
    #Earthquake #UpGoer5 #McGillUniversity

  20. The really big ball that we live on is made of huge pieces of ground that move around. Sometimes they knock into each other, run away from each other, or slip side to side. If two of them get stuck, power builds up in the rock and lets go as they are set free. The ground shakes a lot, large cracks form, rocks might slip down, and houses fall. If that happens in the big water area, a very tall wave will move onto the land and run into it. [M. T.]
    #Earthquake #UpGoer5 #McGillUniversity

  21. Another group of #EarthSystemScience #UpGoer5 Change that happens quickly and continues to grow. The growing that happens begins to happen faster and faster than it did at the start. The number of people in the world is a good way to understand this. It grows faster and faster than it did before. [K. A.]
    #ExponentialGrowth #McGillUniversity

  22. Another group of Change that happens quickly and continues to grow. The growing that happens begins to happen faster and faster than it did at the start. The number of people in the world is a good way to understand this. It grows faster and faster than it did before. [K. A.]

  23. Another group of #EarthSystemScience #UpGoer5 Change that happens quickly and continues to grow. The growing that happens begins to happen faster and faster than it did at the start. The number of people in the world is a good way to understand this. It grows faster and faster than it did before. [K. A.]
    #ExponentialGrowth #McGillUniversity

  24. Another group of #EarthSystemScience #UpGoer5 Change that happens quickly and continues to grow. The growing that happens begins to happen faster and faster than it did at the start. The number of people in the world is a good way to understand this. It grows faster and faster than it did before. [K. A.]
    #ExponentialGrowth #McGillUniversity

  25. Another group of #EarthSystemScience #UpGoer5 Change that happens quickly and continues to grow. The growing that happens begins to happen faster and faster than it did at the start. The number of people in the world is a good way to understand this. It grows faster and faster than it did before. [K. A.]
    #ExponentialGrowth #McGillUniversity

  26. #UpGoer5 As the number of people gets bigger in an area, the number of stuff that is able to back them up gets lower. The number of people found in a place is controlled by what is going on around them; such as how much food, water and homes found. When the total of how much of these is found around them gets lower, the total number of people coming into this world gets less. They then reach a still state where the number of people stops getting big. [L.N.] #CarryingCapacity #McGillUniversity

  27. As the number of people gets bigger in an area, the number of stuff that is able to back them up gets lower. The number of people found in a place is controlled by what is going on around them; such as how much food, water and homes found. When the total of how much of these is found around them gets lower, the total number of people coming into this world gets less. They then reach a still state where the number of people stops getting big. [L.N.]

  28. #UpGoer5 As the number of people gets bigger in an area, the number of stuff that is able to back them up gets lower. The number of people found in a place is controlled by what is going on around them; such as how much food, water and homes found. When the total of how much of these is found around them gets lower, the total number of people coming into this world gets less. They then reach a still state where the number of people stops getting big. [L.N.] #CarryingCapacity #McGillUniversity

  29. #UpGoer5 As the number of people gets bigger in an area, the number of stuff that is able to back them up gets lower. The number of people found in a place is controlled by what is going on around them; such as how much food, water and homes found. When the total of how much of these is found around them gets lower, the total number of people coming into this world gets less. They then reach a still state where the number of people stops getting big. [L.N.] #CarryingCapacity #McGillUniversity

  30. #UpGoer5 As the number of people gets bigger in an area, the number of stuff that is able to back them up gets lower. The number of people found in a place is controlled by what is going on around them; such as how much food, water and homes found. When the total of how much of these is found around them gets lower, the total number of people coming into this world gets less. They then reach a still state where the number of people stops getting big. [L.N.] #CarryingCapacity #McGillUniversity

  31. More #EarthSystemScience #UpGoer5
    Trees can tell us is what the world was like in the past. The rings inside a tree can show us how much it grew each year. In wet years, the tree will grow a thick ring, and in dry years, it will grow a small ring. People can study tree rings to see how hot and cold the world has been and how it has changed over time. It helps us understand how the world is changing now and how it may change. [S. H.-R.]
    #Proxies #McGillUniversity #SimpleWords

  32. More
    Trees can tell us is what the world was like in the past. The rings inside a tree can show us how much it grew each year. In wet years, the tree will grow a thick ring, and in dry years, it will grow a small ring. People can study tree rings to see how hot and cold the world has been and how it has changed over time. It helps us understand how the world is changing now and how it may change. [S. H.-R.]

  33. More #EarthSystemScience #UpGoer5
    Trees can tell us is what the world was like in the past. The rings inside a tree can show us how much it grew each year. In wet years, the tree will grow a thick ring, and in dry years, it will grow a small ring. People can study tree rings to see how hot and cold the world has been and how it has changed over time. It helps us understand how the world is changing now and how it may change. [S. H.-R.]
    #Proxies #McGillUniversity #SimpleWords

  34. More #EarthSystemScience #UpGoer5
    Trees can tell us is what the world was like in the past. The rings inside a tree can show us how much it grew each year. In wet years, the tree will grow a thick ring, and in dry years, it will grow a small ring. People can study tree rings to see how hot and cold the world has been and how it has changed over time. It helps us understand how the world is changing now and how it may change. [S. H.-R.]
    #Proxies #McGillUniversity #SimpleWords

  35. More #EarthSystemScience #UpGoer5
    Trees can tell us is what the world was like in the past. The rings inside a tree can show us how much it grew each year. In wet years, the tree will grow a thick ring, and in dry years, it will grow a small ring. People can study tree rings to see how hot and cold the world has been and how it has changed over time. It helps us understand how the world is changing now and how it may change. [S. H.-R.]
    #Proxies #McGillUniversity #SimpleWords

  36. Ekman spiral continued....
    The deeper water does not feel the wind, but it does feel the water above moving. So the same thing happens again, except this time the water goes in a direction even further from that of the wind, and so on, turning as we go deeper. At each step, we lose a bit of force, so we have less and less as we go down.
    [A. B.-K.]
    [2/2]
    #Ekman #UpGoer5 #McGillUniversity #SimpleWords #EarthSystemScience

  37. Ekman spiral continued....
    The deeper water does not feel the wind, but it does feel the water above moving. So the same thing happens again, except this time the water goes in a direction even further from that of the wind, and so on, turning as we go deeper. At each step, we lose a bit of force, so we have less and less as we go down.
    [A. B.-K.]
    [2/2]

  38. Ekman spiral continued....
    The deeper water does not feel the wind, but it does feel the water above moving. So the same thing happens again, except this time the water goes in a direction even further from that of the wind, and so on, turning as we go deeper. At each step, we lose a bit of force, so we have less and less as we go down.
    [A. B.-K.]
    [2/2]
    #Ekman #UpGoer5 #McGillUniversity #SimpleWords #EarthSystemScience

  39. Ekman spiral continued....
    The deeper water does not feel the wind, but it does feel the water above moving. So the same thing happens again, except this time the water goes in a direction even further from that of the wind, and so on, turning as we go deeper. At each step, we lose a bit of force, so we have less and less as we go down.
    [A. B.-K.]
    [2/2]
    #Ekman #UpGoer5 #McGillUniversity #SimpleWords #EarthSystemScience

  40. Ekman spiral continued....
    The deeper water does not feel the wind, but it does feel the water above moving. So the same thing happens again, except this time the water goes in a direction even further from that of the wind, and so on, turning as we go deeper. At each step, we lose a bit of force, so we have less and less as we go down.
    [A. B.-K.]
    [2/2]
    #Ekman #UpGoer5 #McGillUniversity #SimpleWords #EarthSystemScience

  41. When there is wind over water, the water's direction is normal to that of the wind. Whether it goes left or right is decided by the side of the mother ball we are on. Since the mother ball turns, the water closest to the middle goes the fastest. So when wind carries water further away from the middle, the water keeps its force, and that's why it doesn't move in the same direction as the wind. Continued....
    [A. B.-K.]
    [1/2]
    #Ekman #UpGoer5 #McGillUniversity #SimpleWords

  42. When there is wind over water, the water's direction is normal to that of the wind. Whether it goes left or right is decided by the side of the mother ball we are on. Since the mother ball turns, the water closest to the middle goes the fastest. So when wind carries water further away from the middle, the water keeps its force, and that's why it doesn't move in the same direction as the wind. Continued....
    [A. B.-K.]
    [1/2]

  43. When there is wind over water, the water's direction is normal to that of the wind. Whether it goes left or right is decided by the side of the mother ball we are on. Since the mother ball turns, the water closest to the middle goes the fastest. So when wind carries water further away from the middle, the water keeps its force, and that's why it doesn't move in the same direction as the wind. Continued....
    [A. B.-K.]
    [1/2]
    #Ekman #UpGoer5 #McGillUniversity #SimpleWords

  44. When there is wind over water, the water's direction is normal to that of the wind. Whether it goes left or right is decided by the side of the mother ball we are on. Since the mother ball turns, the water closest to the middle goes the fastest. So when wind carries water further away from the middle, the water keeps its force, and that's why it doesn't move in the same direction as the wind. Continued....
    [A. B.-K.]
    [1/2]
    #Ekman #UpGoer5 #McGillUniversity #SimpleWords

  45. When there is wind over water, the water's direction is normal to that of the wind. Whether it goes left or right is decided by the side of the mother ball we are on. Since the mother ball turns, the water closest to the middle goes the fastest. So when wind carries water further away from the middle, the water keeps its force, and that's why it doesn't move in the same direction as the wind. Continued....
    [A. B.-K.]
    [1/2]
    #Ekman #UpGoer5 #McGillUniversity #SimpleWords

  46. Did you know that floors can move and dance? You can see it if you give it a chance. There are three ways the floor can move. The first is when two floors move close together. The second way the floor can move is when one floor is moving left and the other floor is moving right. This little dance can make points with hot red coming out. The final move a floor can do is rub close and shake, making a little dance for me, and you! [C.M.]
    #plateTectonics #upgoer5 #McGillUniversity #simpleWords

  47. Did you know that floors can move and dance? You can see it if you give it a chance. There are three ways the floor can move. The first is when two floors move close together. The second way the floor can move is when one floor is moving left and the other floor is moving right. This little dance can make points with hot red coming out. The final move a floor can do is rub close and shake, making a little dance for me, and you! [C.M.]

  48. Did you know that floors can move and dance? You can see it if you give it a chance. There are three ways the floor can move. The first is when two floors move close together. The second way the floor can move is when one floor is moving left and the other floor is moving right. This little dance can make points with hot red coming out. The final move a floor can do is rub close and shake, making a little dance for me, and you! [C.M.]
    #plateTectonics #upgoer5 #McGillUniversity #simpleWords

  49. Did you know that floors can move and dance? You can see it if you give it a chance. There are three ways the floor can move. The first is when two floors move close together. The second way the floor can move is when one floor is moving left and the other floor is moving right. This little dance can make points with hot red coming out. The final move a floor can do is rub close and shake, making a little dance for me, and you! [C.M.]
    #plateTectonics #upgoer5 #McGillUniversity #simpleWords

  50. Did you know that floors can move and dance? You can see it if you give it a chance. There are three ways the floor can move. The first is when two floors move close together. The second way the floor can move is when one floor is moving left and the other floor is moving right. This little dance can make points with hot red coming out. The final move a floor can do is rub close and shake, making a little dance for me, and you! [C.M.]
    #plateTectonics #upgoer5 #McGillUniversity #simpleWords

  51. I asked my students to explain an Earth System Science concept using only the ten hundred most common English words. Inspired by a toot by Andy @revkin and enabled by Theo Sanderson's online editor: splasho.com/upgoer5/
    There were some amazingly creative creations!
    #upgoer5 #simplewords #Earth SystemScience

  52. I asked my students to explain an Earth System Science concept using only the ten hundred most common English words. Inspired by a toot by Andy @revkin and enabled by Theo Sanderson's online editor: splasho.com/upgoer5/
    There were some amazingly creative creations!
    SystemScience

  53. I asked my students to explain an Earth System Science concept using only the ten hundred most common English words. Inspired by a toot by Andy @revkin and enabled by Theo Sanderson's online editor: splasho.com/upgoer5/
    There were some amazingly creative creations!
    #upgoer5 #simplewords #Earth SystemScience

  54. I asked my students to explain an Earth System Science concept using only the ten hundred most common English words. Inspired by a toot by Andy @revkin and enabled by Theo Sanderson's online editor: splasho.com/upgoer5/
    There were some amazingly creative creations!
    #upgoer5 #simplewords #Earth SystemScience

  55. I asked my students to explain an Earth System Science concept using only the ten hundred most common English words. Inspired by a toot by Andy @revkin and enabled by Theo Sanderson's online editor: splasho.com/upgoer5/
    There were some amazingly creative creations!
    #upgoer5 #simplewords #Earth SystemScience

  56. Solar Parker Probe = Touches the Sun Space Car #UpGoer5 #AGU22

  57. Solar Parker Probe = Touches the Sun Space Car #UpGoer5 #AGU22

  58. Solar Parker Probe = Touches the Sun Space Car #UpGoer5 #AGU22

  59. Solar Parker Probe = Touches the Sun Space Car #UpGoer5 #AGU22

  60. The Halloween storm in #SpaceWeather will now always be referred to as "Nervous cat and bad green women time". #UpGoer5 #AGU22