11 June 2009

 

!!Impossible Blog!!

Here is an Extra credit blog worth 50 EXTRA CREDIT POINTS! The problem is can you complete it? I think not.

Name the 5 defining points of the Quantum theory.

Give an analogy or simile to the concept of observable universes overlapping.

How do we know that dark matter exists? Name to possible particles that can make up dark matter.

Explain in a minimum of 3 ways the universe can come to and end. (7 sentences each.)

Define a type 1 and type 2 supernova.

Name the 3 numbers that Mr. Johnson names in class in February.

What was the assignment in the first blog we did this year in bio.

What is the value of the Chandrasekhar Limit and how is it applied?

What is one of the most sought after findings in modern physics? Hint no G.U.T. no glory.

Explain the m and m theory.

How many tiles are in the Bio wing? Hint half and quarter tiles count.

How many lockers are in the bio wing?

What is Lopadotemachoselachogaleokranioleipsa nodrimhypotrimmatosilphioparaomelitokatakech ymenokichlepikossyphophattoperisteralektryono ptekephalliokigklopeleiolagoiosiraiobaphetraganopterygon?
Hint: Its all one word. Ha Ha

A baby hamster kidney (BHK) cell has a surface area of 3,400 micrometres². Assume that the endocyte clathrin-coated pits account for 2% of this area and that the surface area of a single coated pit is the same of that of a 100nm diameter clathrin coated vesicle that will be formed from it. If the cell surface has 100,000 transferrin receptors, around 70% are localised within coated pits, work out the following:If a transferrin receptor has a cross-sectional area of 50 Angstroms X 100 angstroms (5x10nm), how many receptors could be accomodated in a 100nm clathrin-coated vesicle assuming that only 50% of the surface area can be occupied by proteins? Support your response with 4 links.
Comments:
...that she doesn't think this blog is impossible to do, just impossible to do right :)

1. - Light consists of both waves and particles
- The particles of light are the smallest pieces of matter possible
- The particles move in a wave- like manner
- A photon cannot be observed as a particle and a wave at the same time
- Any of the first four points hold true for all objects

2. When 2 observable universes overlap it is like 2 balloons overlapping.

3. We know that dark matter exists because it has gravitational force and thus interrupts motion of visible objects. There is also an unaccounted for source of mass in the universe and we think that this may be responsible. It can be made of brown dwarf stars or black holes.

4. - The universe could come to an end if it did not stop expanding. This would be called the Big Freeze. Since it would keep expanding, it would be too cold to sustain life. Everyone on any planet would die. Galaxies would also be driven away from one another. Also, the supply of gas needed for stars to shine will eventually exhausted. There would be no sun to heat the earth then.

- The Heat Death is another theory. This is the end result of entropy. Entropy would occur if energy becomes evenly distributed in the universe. If this happens, life is not possible. We need there to be a transfer of energy for life. Digestion is an example of this because we get energy from food. Processing is an example of this because we get energy from raw materials.

- The Big Crunch is another theory for the end of the universe. It is the opposite of the Big Bang theory. In the Big Bang, there is an explosion and all planets, matter, etc. is formed. This is a very respected theory for the origin of the universe. In the Big Crunch, the universe collapses onto itself. This would be a result of gravity. It would be similar to a black hole. After the Big Crunch, the Big Bang would occur all over again.

5. - A type 1 supernova is formed when mass from a star hits a white dwarf star and it explodes, destroying the star.

- A type 2 supernova is formed when the core of a massive star collapses onto itself, forming a black hole or a neutron star.

6. He mentioned 3, 8, and 18.

7. The first bioblog assignment was a test to make sure we could all post a comment.

8. The value of the Chandrasekhar limit is:




It is applied to find the maximum possible size of a white dwarf star.

9. One of the most sought after findings is the revision of the Hexahedron Theory, or the Grand Unified Theory.

10. The m theory is a new limit of the string theory in which 11 dimensions of spacetime can be identified. It combines all of the former string theories.

11. There are 3,517 tiles in the Bio wing.

12. There are 119 lockers in the Bio wing.

13. Lopadotemachoselacho galeokranioleipsanodrimhypotrimmatosilphioparaomelitokatakechymenokichlepikossyphophattoperisteralektryonoptekephalliokigklopeleiolagoiosiraiobaphetraganopterygonis type of polygon.

14. 314 receptors could be accommodated.

Link 1!
Link 2!!
Link 3!!!
Link 4!!!!

DONE with the impossible blog...I ♥♥♥♥♥♥♥ Google and Wikipedia!!!!!!!
 
Hmmmm. Not bad. You didnt get them all right but you were definitly on the right track. Look them up on different sources and try again please. Your simili good but a better one has to do with video games. On #4 can you explain why energy could become evenly distributed. Good job though.
 
4. Entropy, or the amount of energy in a physical system which cannot be used for mechanical purposes, has a tendency to increase therefore spreading out the energy and becoming the basis for the end of the universe.
 
1. Wave-Particle duality (verified by the single-slit, double-slit experiment)
2. from a light as particles viewpoint, individual "particles"/quanta are the smallest units of energy that can exist
3. particles move in probability fields
4. Heisenberg Uncertainty principal states that a wave and particle characteristics cannot simultaneously be observed (also, the position and velocity of a single particle cannot be known simultaneously as all known measurement techniques will find one while destroying the other)
5. first four hold true for all objects

The best description of two universes overlapping is "the big bang".

We know that dark matter exists because it has a gravitational effect on all matter. (along with dark energy may comprise the majority of the universe) two types are baryonic and nonbaryonic particles (hot, warm, cold)

Universe dies

1. The first possible outcome is from a closed universe. This suggests that the universe in finite. Standard Euclidian geometry is inaccurate in this universe (all lines intersect - curved space). The repulsing effect of dark matter is not present. Due to this and gravitational attraction, the universe will self-destruct through collapsing on itself. This event will be known as the "Big Crunch". Although an abundant amount of dark matter will prevent gravitational collapse and indefinitely prolong a “big crunch.
2. The second fate of the universe would come from the universe being an open universe. Space is negatively curved. It is useful to imagine space as a concave lens instead of convex to imagine this. Lines curve away from each other and therefore parallel lines do not exist. Regardless of the presence of dark matter, an open universe forever expands. The fate of this universe if “heat death” or the attainment of maximum entropy in which total temperature (energy) reaches equilibrium and is evenly dispersed throughout the universe. Other fates include the Big Freeze (heat death) and the big rip (separation of particles due to universal expansion).
3. The Thirst type of universe (and its corresponding fate) is a flat universe. Standard Euclidian geometry holds true. Parallel line’s never intersect and angle measures of geometric figures are standard. With dark energy, the universe expands, but progressively slower. With dark energy, expansion rates increase. The flat universe and the open universe share the same fate.
4. Big freeze/heat death - The Big Freeze is a scenario under which continued expansion results in a universe that is too cold. most commonly accepted theory within the scientific community. A related scenario is Heat death, - there are no gradients — which are needed to sustain information processing, one form of which is life. Requires that the universe reach an eventual temperature minimum.
 
part 2
Type one supernova – A supernova (pl. supernovae) is a stellar explosion. Supernovae are extremely luminous and cause a burst of radiation that often briefly outshines an entire galaxy, before fading from view over several weeks or months.
Type two supernova - results from the internal collapse and violent explosion of a massive star. The presence of hydrogen in its spectrum is what distinguishes a type II supernova from other classes of supernova explosions. A star must have at least 9 times the mass of the Sun in order to undergo this type of core-collapse

3 numbers mr Johnson mentioned was 3 (favorite number), 8 (period 8), 2009 (he must have told us the date once

The first assignment we did was watch a video and say yes “i was able to see the video”

The Chandrasekhar limit is the limit of masses of bodies from electron degenerate matter, which is extremely dense due to concepts described by the Pauli exclusion principle. During a core collapse supernova, the supernova occurs once the density of the core exceeds the Chardrasekhar limit.

The most sought after theory is the Grand Unification theory which describes perplexing relationships of strong, weak, gravitational, and electromagnetic forces

The M in M theory stands for membrane. M theory, also known as string theory, a new incomplete method of describing the existence of matter through multiple dimensions and particles existing due to vibrations of single dimensional “strings”

There are at least 100 tiles in the Bio Wing. (Viraj reference)

There are at 119 lockers in the Bio Wing

The giant word a fictional dish mentioned in Aristophanes' comedy Assemblywomen.
Around 314.159 could be accommodated. (lets say 314 because you can’t have a fraction)
3
1
2
4
Also, you are one SICK person, but this was the best blog all year.
 
1. Five defining points of the quantum theory:

- wave-particle duality aka light consists of waves and particles
- particles of light are smallest known portions of energy that can possibly exist
- light particles move in a wave-like manner
- Heisenberg Uncertainty principle aka “photon” can not be observed as a particle and wave at the same time when undergoing measurement; each photon is pretty much impossible to fully define
- Above points stay true for not only electromagnetism, but for all objects; quantum mechanical properties can only be measured when dealing with individual subatomic particles

2. An analogy for the overlapping of observable universes: two overlapping beach balls

3. Dark matter is hypothetical matter that is undetected by its emitted radiation. Its presence is inferred from gravitational effects on visible matter; a dark matter component has more mass than a visible component of the universe and is believed to not interact with ordinary matter and contain no atoms. Possible particles that make up dark matter are axions or super-symmetric particles.

4. Ways the world can end:
a) Global epidemic- (just a thought...) Old disease/plagues have killed millions of people (ex. Bubonic Plague) and some of them (ex. Cholera and measles) have developed resistance to our antibiotics. With international traveling, diseases can travel fairly quickly (like with the swim flu). Intensive agriculture and land development is bringing humans closer to animal pathogens. That increases the risks of a human being infected with a new disease. If a new, deadly diseases were to catch humans off guard and kill out the majority of humans and the humans couldn’t regenerate the population, the food system would go out of whack leading to a destroyed ecosystem, leading to the end of the world; or…if you think of it differently, the end of the world as we know it.

b) Asteroid impact- It’s self explanatory- an asteroid hits the earth, people die, the climate changes, end of world. Or an asteroid hits earth and takes out part parts of the world with it, destroying life (like the theory with the dinosaurs). There have been estimations that roughly every 250,000 years, objects more than .5 of a mile will hit the earth. For example: 1908, Tunguska region in Siberia, Russia- a 200 ft wide comet fragment hit the atmosphere and exploded. It had nearly 1,000 times the energy of an atomic bomb. And that didn’t even hit the surface of the earth!

c) Rogue Black Holes- Black holes have gravity levels so strong, they can ‘swallow’ basically anything. There are about 10 million of them in the Milky way (by guessimate). It is predicted that several decades before the end, scientists will find strange perturbation in the orbits of outer planets. The black hole wouldn’t have to get that close to the earth to ‘swallow it’. Or, the orbit of the earth may be changed, creating extreme climate swings.
 
5. Type I supernova- occurs in a binary system when one star is a White dwarf and its explosion is triggered when the mass from the companion star collapses into the White dwarf, raising its mass above its limit causing it to destroy itself.
Type II supernova- occurs when a gigantic star’s core collapses. These leave behind black holes

6. Mr. Johnson mentioned 3, 13, and 16.

7. The first blog assignment was saying that we could reply to the blog.
8. The Chandrasekhar Limit limits the mass of bodies made from electron-degenerate matter. The limit is the max non-rotating mass that can be supported against gravitational collapse by electron degeneracy pressure. It’s applied to the max size of a white star.
9. One of the most sought after findings in modern physics is the Grand Unified Theory

10. The m theory is a new limit of string theory and allows 11 space-times to be identified. It is more fundamental than all other string theories and also combines all former string theories.

11. There are 2,455 tiles in the bio wing (all ½ and ¼ and ¾ tiles counted as one; bio wing was all white/red/blue tiles.

12. There are 209 lockers in the bio wing.

13. It’s some weird type of shape, possibly a polygon.

14. 314 receptors

Click Here
and click here
and Here
and here too
 
aw come on this stuff is easy! you just have to know the right people.
 
Oooooo you people are serously getting close! People are still getting the value of the chandrackshar limit wrong. Ha Ha Dr. B
 
Revised-
The Chandrasekhar limit is an important value in astrophysics. It is the mass limit at which a nonrotating astral body cannot be supported by the pressure of the electron shells in its atoms anymore, and gravitational collapse occurs. The Chandrasekhar limit is approximately 1.4 solar masses, or 2.85x1030 kg. Use of the Chandrasekhar limit is fundamental in analyzing the evolution and demise of stars.
 
some more fixes
lockers 209
tiles 2,455
numbers 5,7,11
 
1. Five defining points of the quantum theory:
- wave-particle duality aka light consists of waves and particles
- particles of light are smallest known portions of energy that can possibly exist
- light particles move in a wave-like manner
- Heisenberg Uncertainty principle aka “photon” can not be observed as a particle and wave at the same time when undergoing measurement; each photon is pretty much impossible to fully define
- Above points stay true for not only electromagnetism, but for all objects; quantum mechanical properties can only be measured when dealing with individual subatomic particles

2. An analogy for the overlapping of observable universes is two overlapping balls

3. Dark matter is hypothetical matter that is undetected by its emitted radiation. Its presence is inferred from gravitational effects on visible matter; a dark matter component has more mass than a visible component of the universe and is believed to not interact with ordinary matter and contain no atoms. Possible particles that make up dark matter are axions or super-symmetric particles.

4. Ways the world can end:
a) Asteroid impact- An asteroid hits the earth, people die, the climate changes, end of world. Or an asteroid hits earth and takes out part parts of the world with it, destroying life (like the theory with the dinosaurs). There have been estimations that roughly every 250,000 years, objects more than .5 of a mile will hit the earth. Some can over 1,000 times the energy of an atomic bomb. There is also the chance that it wont hit the earth’s surface.
b) Rogue Black Holes- Black holes have gravity levels so strong; they can ‘swallow’ basically anything. There are about 10 million of them in the Milky Way. It is predicted that several decades before the end, scientists will find strange perturbation in the orbits of outer planets. The black hole wouldn’t have to get that close to the earth to ‘swallow it’. Or, the orbit of the earth may be changed, creating extreme climate swings.
a) Global epidemic- Old disease/plagues have killed millions of people and some of them have become resistant to the antibiotics. Due to transportation and travel disease will spread quickly. Intensive agriculture and land development is bringing humans closer to animal pathogens. That increases the risks of a human being infected with a new disease. If new, deadly diseases were to catch humans off guard and kill out the majority of humans and the humans couldn’t regenerate the population, the food system would go out of whack leading to a destroyed ecosystem, leading to the end of the world.
 
5. Type I supernova- occurs in a binary system when one star is a White dwarf and its explosion is triggered when the mass from the companion star collapses into the White dwarf, raising its mass above its limit causing it to destroy itself.
Type II supernova- occurs when a gigantic star’s core collapses. These cause the formation of black holes.

6. Mr. Johnson mentioned 5, 7 and 11.

7. The first blog assignment was to see if you could reply to the blog.

8. The Chandrasekhar Limit limits the mass of bodies made from electron-degenerate matter. The limit is the max non-rotating mass that can be supported against gravitational collapse by electron degeneracy pressure. It’s applied to the max size of a white star.

9. Grand Universal Theory

10. The m theory is a new limit of string theory and allows 11 space-times to be identified. This is based on previous string theories.

11. There are 2,555 tiles in the bio wing. All tiles, no matter the size counted as one.

12. There are 209 lockers in the bio wing. Not including little lockers, on top.

13. Seems like it some shape.

14. 314 receptors

Click Here
Click Here
Click Here
Click Here
 
way to switch from copying my numbers to copying Emily's Robert!!
haha
 
Lopado­temakho­selakho­galeo­kranio­leipsano­drim­hypo­trimmato­silphio­karabo­melito­katakekhy­meno­kikhl­epi­kossypho­phatto­perister­alektryon­opto­kephallio­kigklo­peleio­lagōio­siraio­baphē­tragano­pterýgōn is a fictional dish mentioned in Aristophanes' comedy Assemblywomen. It contains 17 ingredients:
Fish slices
Fish of the Elasmobranchii subclass (a shark or ray)
Rotted dogfish or small shark's head
Generally sharp-tasting dish of several ingredients grated and pounded together
Silphion "laserwort," apparently a kind of giant fennel
A kind of crab, shrimp, or crayfish
Honey poured down
Wrasse (or thrush)
Was topped with a kind of sea fish or Blackbird
Wood pigeon
Domestic pigeon
Chicken
Roasted head of dabchick
Hare, which could be a kind of bird or a kind of sea hare
New wine boiled down
Wing and/or fin
Ouzo

There are 209 lockers and 2,455 tiles in the Bio wing.
 
more corrections:

The chandrasekhar limit is the maximum limit of the mass of a nonrotating astral body at which it cannot be supported by its electron shells anymore so gravity causes it to collapse.
 
There are still 2 questions that no one has answered correcly. lol
 
which 2?
 
yo oat stop helping them!
 
No, thats ok I don't mind Johnson!!
 
dont you dare tell them which two rye!
:o
hj
 
tell us rye!!
 
Revised....

Lopado­temakho­selakho­galeo­kranio­leipsano­drim­hypo­trimmato­silphio­karabo­melito­katakekhy­meno­kikhl­epi­kossypho­phatto­perister­alektryon­opto­kephallio­kigklo­peleio­lagōio­siraio­baphē­tragano­pterýgōn is a fictional dish mentioned in Aristophanes’ comedy; Assemblywomen. It's a dish made of "dainties, fish, flesh, foul, and sauces." It's a type of fricassée- a creamy dish often made with poultry. It is then cut into pieces and stewed with gravy that is thickened with butter/cream/milk. It often contains other ingredients and vegetables.

The value of the Chandrasekhar Limit is approximately 1.4 solar masses, or 2.85x1030 kg.

Also, since what I posted was how the world could end, not the universe: a more updated version:

The Big Rip is the theory that there is a finite lifespan. In case of phantom dark energy, the Hubble Constant will increase. As a result, all materials in the universe will disintegrate into unbound elementary particles and radiation. It would be ripped apart by the phantom energy force and would shoot apart from each other.

The Big Freeze is the scenario when universal expansion extends into somewhere. If that somewhere were too cold, if could lack the absence of dark energy. And it would occur only under flat geometry. It could also occur in a closed universe if it had a positive cosmological constant. It is most commonly accepted in the scientific community.

The Heat Death is related to the Big Freeze (cool names, right?). It says that if universal expansion went into somewhere where there is max entropy where everything is distributed fairly, there are no gradients. Gradients are needed to sustain information processing. One version of that is life.

Also, Michelle, you said Robert copied your #s, then mine. Then why are your #s the same as mine?
 
Quantum theory:
1) - wave-particle duality (light consists of waves and particles)
- light particles move in a wave-like manner
-light particles are smallest known portions of energy that can possibly exist
- Heisenberg Uncertainty principle(photon) can not be observed as a particle and wave at the same time when undergoing measurement;impossible to define
- Above points stay true for not only electromagnetism, (all objects) quantum mechanical properties can only be measured when dealing with individual subatomic particles

2)An overlapping of two plates

3) Dark matter is matter that is undetected by its emitted radiation. Its presence is created from gravitational effects on visible matter. a dark matter has more mass than a visible component of the universe and is believed to not deal with ordinary matter and contain no atoms. Possible materials that make up dark matter are axions or super-symmetric particles.

4)Disease- The universe can come to an end through the spread of a fatal disease. Some plagues and diseases have killed many people, and it is believed that a disease may be unaffected by antibiotics and kill us all. Now a days disease would spread rapidly. People are constantly interacting. In an extreme case the population wouldn't be able to regenerate. Food sources could be contaminated, so there will be no source for people to eat.

Gamma-ray burst-
Everytime you see a bright flash in the sky, it is a gamma-ray burst, astrophysicists recently learned. They originate in distant galaxies and are unfathomably powerful- as much as 10 quadrillion times as energetic as the sun. The bursts probably result from the merging of two collapsed stars. Before the cataclysmal event, such a double star might be almost completely undetectable, so we'd likely have no advance notice if one is nearby. Once the burst begins, however, there would be no missing. At a distance of 1,000 light-years- farther than most of the stars you can see on a clear night- it would appear about as bright as the sun. Earth's atmosphere would initially protect us from most of the burst's deadly X rays and gamma rays, but at a cost. The potent radiation would cook the atmosphere, creating nitrogen oxides that would destroy the ozone layer.
 
Giant solar flares-
Solar flares- more properly known as coronal mass ejections- are enormous magnetic outbursts on the sun that bombard Earth with high-speed subatomic particles. Earth's atmosphere and magnetic field negate the potentially lethal effects of ordinary flares. But while looking through old astronomical records, Bradley Schaefer of Yale University found evidence that some perfectly normal-looking, sunlike stars can brighten briefly by up to a factor of 20. Schaefer believes these stellar flickers are caused by superflares, millions of times more powerful than their common cousins. Within a few hours, a superflare on the sun could fry Earth and begin disintegrating the ozone layer. Although there is evidence that our sun doesn't engage in such excess, scientists don't know why superflares happen at all, or whether our sun could exhibit milder but still disruptive behavior. And while too much solar activity could be deadly, too little of it is problematic as well. Sallie Baliunas at the Harvard-Smithsonian Center for Astrophysics says many solar-type stars pass through extended quiescent periods, during which they become nearly 1 percent dimmer. That might not sound like much, but a similar downturn in the sun could send us into another ice age. Baliunas cites evidence that decreased solar activity contributed to 17 of the 19 major cold episodes on Earth in the last 10,000 years.

5) type 1 supernova is formed when mass from a star hits a white dwarf star and it explodes, this desroys the star

type 2 supernova is formed when the core of a big star collapses onto itself, forming a black hole or a neutron star.

6)5,7,11

7)The first blog was to post a commment lol

8)The Chandrasekhar Limit limits the mass of bodies made from electron-degenerate matter. The limit is the mnon-rotating mass that can be prooved against gravitational collapse by electron degeneracy pressure. It’s applied to the max size of a white star.

9)Grand Unified Theory

10) The M in M theory is known as string theory, a new incomplete method of describing the existence of matter through multiple dimensions and particles existing.

11) 3,009 tiles

12) 206 lockers

13) it is a dish (food)

14) 314

Click Here


Click Here


Click Here


Click Here
 
1. The five defining points of the quantum theory are:
- Energy is not continuous, coming in small units
- Elementary particles act like particles and waves
- Movement of particles is random
- It is impossible to know the position and speed of the particle at the same time
- The atomic world is very different from ours

2. The observable universes overlapping are like two spheres overlapping.

3. We know that dark matter exists because in August of 2006, NASA had found that dark matter and normal matter had been pulled apart by the collision of two large clusters of galaxies. Hot dark matter and warm dark matter are two types of dark matter particles.

4. The Big Freeze is a way in which the universe can come to an end. In this situation, an absence of dark energy could lead to expansion. This would result in a universe that is too cold for organisms to survive. This freeze could occur only under a flat or hyperbolic geometry. Heat death is another scenario that is similar to this. In heat death, everything will be evenly distributed. Gradients will not be existent either. This will ultimately lead to the death of all forms.
The Big Rip is another possibility of fatality. In this scenario, density of dark matter increases with time. This will lead to a steady increase in the Hubble constant. Eventually, galaxies and all forms will fragment into elementary particles and radiation. Expansion will become infinite. No matter what the size of the previous matter, every unit will disintegrate into microscopic particles and radiation. If the Big Rip were ever to occur, it would happen 20 billion years from now.
The Big Crunch is, again, another possible path of demise. This theory states that the density of the universe is great enough to have the ability to stop its expansion. If this were to occur, it would start to contract. If it were to contract, the universe could collapse into a gigantic black hole. This would be followed by another Big Bang. This process would cause the universe to cycle in phases of expansion and contraction (Big Bang, then Big Crunch).

5. A type one supernova occurs in a binary system. One star is a white dwarf. This supernova is activated when mass falls on top of the white dwarf, causing the star to collapse. The white dwarf heats so profusely that its carbon and oxygen fuse, leading to a major explosion. This destroys the star completely.
A type two supernova occurs when the core of a star collapses. These types of supernovas leave behind neutron stars or black holes.

6. The first blog we did this year in bio was a blog about how to post a blog. We learned how to use the html link and username functions.

7. The Chandrasekhar Limit limits the mass of bodies made from electron-degenerate matter that consists of nuclei immersed in gas of electrons. If a main sequence star is not too big, it will shed enough mass to produce a white dwarf with a mass below the Chandrasekhar Limit.
8. The unified field theory of physics is a theory that is sought after by physicists. This is a field theory that allows fundamental forces between elementary particles to be written in terms of one field. This is an open field of research, which is what makes it so coveted.

9. The m theory is a new limit of string theory. In this theory, 11 dimensions of space time can be found.

10. There are 2,455 tiles and 209 lockers in the biology wing.

11. Wow, I can’t believe I actually found this one online… shocker…This is the longest spoken word in the English language; it is a fictional dish mentioned in Aristophanes’ comedy Assemblywomen. It’s 183 letters!

12. Huh, I had to look at this for a very long time… but I think it’s just pi times 100, so it’s 314.1592654….. so basically 314!

Click Here!

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Click Here!

Click Here!
 
Oh, also Mr. J talked about the numbers... well, just guessing... 3, 12, and 15?
 
Also, for number one on mine, i think the last main point is really that the other four points are applicable to all abjects... so scratch my first response!
 
) - wave-particle duality (light consists of waves and particles)
- light particles move in a wave-like manner
-light particles are smallest known portions of energy that can possibly exist
- Heisenberg Uncertainty principle(photon) can not be observed as a particle and wave at the same time when undergoing measurement;impossible to define
- Above points stay true for not only electromagnetism, (all objects) quantum mechanical properties can only be measured when dealing with individual subatomic particles

proponents of Membrane (M) Theory suggest some tantalizing possibilities that there may be multiple universes overlapping our own without any interference among them. New universes may have their beginning (Big Bang) when two separate membranes (each defining independent universes) collide. This interesting idea makes it theoretically possible to speculate about what happened before the Big Bang


In astronomy and cosmology, dark matter is hypothetical matter that is undetectable by its emitted radiation, but whose presence can be inferred from gravitational effects on visible matter.[1] Dark matter is postulated to explain the flat rotation curves of spiral galaxies and other evidence of "missing mass" in the universe. According to present observations of structures larger than galaxies, as well as Big Bang cosmology, dark matter and dark energy account for the vast majority of the mass in the observable universe
incompatible with the DAMA results if dark matter consists of neutralinos and usual electrons, protons, neutrons.

1.)Big Crunch--- The universe will stop expand and compact into an infinitely hot, dense singularity, the exact opposite of the Big Bang. This is the least likely theory, unless dark energy's effect on the universe reverses. however, we would not know about it for tens of billions of years.

2.)Big Rip--- If the strength of dark energy increases, it could overcome the fundamental forces of the Universe and totally disintegrate everything, including atoms. This could happen in 20-30 billion years.
 
brian part 2

Big Chill--- If the Universe has a mass-energy density close to or just less than the critical value, and should the effects of dark energy tail off, the Universe might continue to expand at a rate that slowly decreases but never completely stops. Stars will die out, but there will not be enough matter to replace them. even black holes would eventually decay or evaporate into radiation trillions of years from now. Over an unimaginable long period of time, the Universe would suffer a lingering cold death.

A type 1 supernovae happens when one of the two binary stars is a small, dense, white dwarf star. If the companion star ranges too close to the white dwarf that it’s orbiting, the white dwarf’s gravitational pull would draw matter from the other star.Type 2 supernovae occur when a star much more massive than the Sun ends its life. When the star starts burning out, the core of the star quickly collapses releasing amazing energy as neutrinos (a kind of particle smaller than an atom) and electromagnetic radiation (energy that is electric and magnetic).

3 numbers that Mr. Johnson names in class in February are 5,7,11.

the first blog we did this year in bio was to see if anyone could reply to the blog.

Chandrasekhar Limit limits the mass of bodies made from electron-degenerate matter. The limit is the max non-rotating mass that can be supported against gravitational collapse by electron degeneracy pressure. It’s applied to the max size of a white star.


Grand Universal Theory.

a new limit of string theory and allows 11 space-times to be identified. This is based on previous string theories.

2,555 tiles in the bio wing.

209 lockers in the bio wing.


is a fictional dish mentioned in Aristophanes’ comedy; It's a dish made of "dainties, fish, flesh, foul, and sauces." It's a type of fricassée- a creamy dish often made with poultry. It is then cut into pieces and stewed with gravy that is thickened with butter/cream/milk. It often contains other ingredients and vegetables

314

1
2
3
4
 
I wont. Ha Ha
 
hey... its' title is the IMPOSSIBLE blog... what makes ya all think ya all can all do it?
...AND, i might add the grain man (rye) is sworn to secrecy !
now go out side and do something useful... like practice hugging a tree!
:P
hj
 
Whos double trouble?
I didnt copy any numbers. That was the easist part!
 
Forget I said that. Read that response wrong.
 
Ryan next year we have to do a blog, and if I get to post stuff I will make you pay for this.

Five defining points of Quantum Theory is --

1) Wave-Particle duality. Isaac Newton theorized that light consisted of particles. In the 19th century Thomas Young overturned this theory with his belief that light consisted of waves. With the onset of quantum mechanics, it became clear that light consists, oddly enough, of both.

2) The observation that light exists as particles is where the term “quanta” comes from – for these individual particles of light are known as “quanta” of light – they are the smallest portions of energy that can possibly exist. With this theory it finally became clear the relationship between the color of light and the emission of radiation.

3) These particles move in a “wave-like” manner – which explains Thomas Young’s experimental results which concluded that light behaves as a wave. According to quantum mechanics, however, these waves are not actual, physical waves, but waves of probability, defining the chances of finding each individual quanta (or “photon” as they are more commonly called) at any given moment.

4) The Heisenberg Uncertainty principle defines the notion that a “photon” cannot be observed as both a particle and a wave at the same time when undergoing measurement. In other words, the “wave” qualities (which define the particle’s momentum) and the “particle” qualities (which define the particle’s exact position) can never be known at the same time. Thus, one can measure either a photon’s position or its momentum, but never both. Thus, each photon individually is more or less impossible to fully define (hence, uncertainty)

5) Any of these first four points hold true not only for electromagnetism (light and energy) but for all objects. These quantum mechanical properties, however, are only measurable when dealing with individual subatomic particles. As objects get larger, the quantum mechanical properties diminish rapidly. In any visible object, therefore, while each individual atom may be impossible to define, as a collective entity they obey statistical laws, and are thus both predictable and tangible.

--An analogy for the overlapping of observable universes: two overlapping beach balls.

-- We know that dark matter exists because it has a gravitational effect on all matter. It can be made of brown dwarf stars or black holes.
 
-- 3 ways the universe can come to an end.

1) The Big Freeze is a scenario under which continued expansion results in a universe that is too cold. It could, in the absence of dark energy, occur only under a flat or hyperbolic geometry. With a positive cosmological constant, it could also occur in a closed universe. This scenario is currently the most commonly accepted theory within the scientific community. A related scenario is Heat death, which states that the universe goes to a state of maximum entropy in which everything is evenly distributed, and there are no gradients — which are needed to sustain information processing, one form of which is life. The Heat Death scenario is compatible with any of the three spatial models, but requires that the universe reach an eventual temperature minimum. This theory is called Big Freeze or Heat death.

2) he Big Crunch theory is a symmetric view of the ultimate fate of the universe. Just as the Big Bang started a cosmological expansion, this theory postulates that the average density of the universe is enough to stop its expansion and begin contracting. The end result is unknown; a simple extrapolation would have all the matter and space-time in the universe collapse into a dimensionless singularity, but at these scales unknown quantum effects need to be considered. This scenario allows the Big Bang to have been immediately preceded by the Big Crunch of a preceding universe. If this occurs repeatedly, we have an oscillatory universe. The universe could then consist of an infinite sequence of finite universes, each finite universe ending with a Big Crunch that is also the Big Bang of the next universe. Theoretically, the oscillating universe could not be reconciled with the second law of thermodynamics: entropy would build up from oscillation to oscillation and cause heat death. Other measurements suggested the universe is not closed. These arguments caused cosmologists to abandon the oscillating universe model. A somewhat similar idea is embraced by the cyclic model, but this idea evades heat death, because of an expansion of the branes that dilutes entropy accumulated in the previous cycle.

3) One multiverse hypothesis states that our uni-"verse" is merely one Big Bang among an infinite number of simultaneously expanding Big Bangs that are spread out over endless distances (open space). Each "verse" may be either matter or antimatter, with an equal number in existence at any given time. As the "verses" expand they collide and matter and antimatter annihilate, releasing energy. Heat death of a finite universe would be predicted as entropy increases, however, the infinite size of the multiverse and the infinite number of "verses" could mean that new "verses" would be formed as old "verses" were annihilated. A chain reaction multiverse would be analogous to a fireworks display (each explosion representing a Big Bang) that starts in one neighborhood and is followed by fireworks displays in surrounding neighborhoods and then in neighborhoods further out. The chain reaction of Big Bangs would continue to expand as Big Bang fuel is consumed. If the multiverse is open and the fuel is infinite then the chain reaction would expand forever. Of course, it is not known what the "fuel" is, but it is logical to assume that matter and energy are the product of a transformation from a real reactant, possibly the Higgs boson.
 
---- Type 1 Supernova Lacks hydrogen and presents a singly ionized silicon (Si II) line at 615.0 nm (nanometers), near peak light. Non-ionized helium (He I) line at 587.6 nm and no strong silicon absorption feature near 615 nm. Weak or no helium lines and no strong silicon absorption feature near 615 nm

Type 2 Supernova Reaches a "plateau" in its light curve. Displays a "linear" decrease in its light curve (linear in magnitude versus time).

---- 3 numbers that Mr. Johnson names in class in February are 5,7,11.

---- The first assignment we did was watch a video and state whether you were able to see it.

---- The Chandrasekhar limit limits the mass of bodies made from electron-degenerate matter, a dense form of matter which consists of nuclei immersed in a gas of electrons. The limit is the maximum nonrotating mass which can be supported against gravitational collapse by electron degeneracy pressure. is commonly given as being about 1.4 solar masses. Use of the Chandrasekhar limit is fundamental in analyzing the evolution and demise of stars.
---- The most sought after findings in modern physics is the Grand Unified Theory.

---- In theoretical physics, M-theory is a new limit of string theory in which 11 dimensions of spacetime may be identified. Because the dimensionality exceeds the dimensionality of five superstring theories in 10 dimensions, it was originally believed that the 11-dimensional theory is more fundamental and unifies all string theories (and supersedes them).

---- There are 2,555 tiles in the bio wing.

---- There are 209 lockers in the bio wing.

--- The word is a food dish mentioned in Aristophanes' comedy Assemblywomen.

---- 314 receptors could be accommodated.

1


2

3

4
 
1) 1) Wave-Particle duality.
2) Light exists as particles
3) ^ These particles move in a wave-like manner
4)a “photon” cannot be observed as both a particle and a wave at the same time when undergoing measurement.
5) The first four points hold true for al objects

2) Two overlapping basketballs

3) We know dark matter exists because of its gravitational effect on all matter.

4)
5)Type 1 Supernovas occur in a binary system in which one star is a white dwarf, explosion is triggered when mass from a star falls in the white dward]f, causing the star to collapse, and difuse carbon and oxygen, leaving nothing.
Type 2 Supernovas is when a stars core collapses, this leaves black holes or nautron stars.

6) Mr Johnson mentioned, 5 7 and 11
- says the rest of the bio blog

7) Our first blog was a video of mr johnson, and it was just getting the jist of it all and we had to write our names and say if we could see the video or not.

8) The limit is the maximum nonrotating mass which can be supported against gravitational collapse by electron degeneracy pressure. It is named after the astrophysicist Subrahmanyan Chandrasekhar, and is commonly given as being about 1.4 solar masses. As white dwarfs are composed of electron-degenerate matter, no nonrotating white dwarf can be heavier than the Chandrasekhar limit.

HEY THANKS WIKI<3

9) grand unified theory.

im scared my computer is going to give out on me and im going to lose this, so im posting this now
 
10) The M theory is, a new limit of string theory in which 11 dimensions of spacetime may be identified.

11) 2,555 tiles

12) 209 lockers

13)A dish, (food)

14) 314 receptors

uno

due

tre

quattro

why i just did this, is beyond me. Its saturday. This is disgusting. Goodbye.
 
Nobody made you do this A1.
 
when is this due, anyways?
 
Type 1 Supernova Lacks hydrogen and presents a singly ionized silicon (Si II) line at 615.0 nm (nanometers), near peak light. Non-ionized helium (He I) line at 587.6 nm and no strong silicon absorption feature near 615 nm. Weak or no helium lines and no strong silicon absorption feature near 615 nm

Type 2 Supernova Reaches a "plateau" in its light curve. Displays a "linear" decrease in its light curve (linear in magnitude versus time).

3 NUnumbers that Mr. Johnson names in class in February are 5,7,11. SEE EVERYONE MADE FUN OF ME FOR WRITING THIS DOWN IN MY PLANNER IN FEB!

The first assignment we did was to see if we were able to comment.

The Chandrasekhar limit limits the mass of bodies made from electron-degenerate matter, a dense form of matter which consists of nuclei immersed in a gas of electrons. The limit is the maximum nonrotating mass which can be supported against gravitational collapse by electron degeneracy pressure. is commonly given as being about 1.4 solar masses. Use of the Chandrasekhar limit is fundamental in analyzing the evolution and demise of stars.

The most sought after findings in modern physics is the Grand Unified Theory.

In theoretical physics, M-theory is a new limit of string theory in which 11 dimensions of spacetime may be identified.the dimensionality exceeds the dimensionality of five superstring theories in 10 dimensions, it was originally believed that the 11-dimensional theory:more fundamental and unifies all string theories (and supersedes them).

There are 2,555 tiles present in the bio wing.

There are 209 lockers in the bio wing.

The word is a food dish mentioned in Aristophanes' comedy Assemblywomen.

314 receptors could be accommodated.
IT WONT LEMME POST LINKS :


http://en.wikipedia.org/wiki/%C3%85ngstr%C3%B6m

http://en.wikipedia.org/wiki/Clathrin


http://en.wikipedia.org/wiki/Transferrin_receptor


http://en.wikipedia.org/wiki/Receptor
 
1. The five defining points of the quantum theory are ;
- Wave - particle duality consists of waves and particles .
- Particles of light are smallest known portions of energy that can possibly exist .
- Light particles move in a wave - like manner .
- Heisenberg Uncertainty principle can not be observed as a particle and wave at the same time when undergoing measurement for each photon is pretty much impossible to fully define .
- Above points stay true for not only electromagnetism , but for all objects , and quantum mechanical properties can only be measured when dealing with individual subatomic particles .

2. An analogy for the overlapping of observable universes is two overlapping balls , or a Venn diagram .

3. Dark matter is hypothetical matter that is undetected by its emitted radiation . It’s presence is inferred from gravitational effects on visible matter and a dark matter component has more mass than a visible component of the universe and is believed to not interact with ordinary matter and contain no atoms . Possible particles that make up dark matter are axions .

4. Ways the world can end ;
a) Asteroid impact - An asteroid hits the earth , people die , the climate changes , end of world. Or an asteroid hits earth and takes out part parts of the world with it , destroying life ( like the theory with the dinosaurs ) . There have been estimations that roughly every 250,000 years , objects more than .5 of a mile will hit the earth . Some can over 1,000 times the energy of an atomic bomb . There is also the chance that it wont hit the earth’s surface .
b) Rogue Black Holes - Black holes have gravity levels so strong and they can ‘swallow’ basically anything . There are about 10 million of them in the Milky Way . It is predicted that several decades before the end , scientists will find strange perturbation in the orbits of outer planets . The black hole wouldn’t have to get that close to the earth to ‘swallow it’ . Or , the orbit of the earth may be changed, creating extreme climate swings .
c) Open universe - Space is negatively curved . It is useful to imagine space as a concave lens instead of convex to imagine this . Lines curve away from each other and therefore parallel lines do not exist . Regardless of the presence of dark matter, an open universe forever expands . The fate of this universe if “heat death” or the attainment of maximum entropy in which total temperature ( energy ) reaches equilibrium and is evenly dispersed throughout the universe. Other fates include the Big Freeze ( heat death ) and the big rip ( separation of particles due to universal expansion ) .
Fri Jun 12, 03:14:00 PM
Michael G. (2) said...
5. Type I supernova occurs in a binary system when one star is a White dwarf and it’s explosion is triggered when the mass from the companion star collapses into the White dwarf , and raises it’s mass above it’s limit causing it to destroy itself .
Type II supernova occurs when a gigantic star’s core collapses . These cause the formation of black holes .

6. 5 , 7 , and 11 .

7. The first blog assignment was to see if you could reply to the blog .

8. The Chandrasekhar Limit limits the mass of bodies made from electron - degenerate matter . The limit is the max non - rotating mass that can be supported against gravitational collapse by electron degeneracy pressure . It’s applied to the max size of a white star .

9. Grand Universal Theory .

10. The m theory is a new limit of string theory and allows 11 space -times to be identified . This is based on previous string theories .

11. There are 2,555 tiles in the bio wing .

12. There are 209 lockers in the bio wing .

13. Seems like it some shape .

14. 314 receptors .

Uno .
Dos .
Tres .
Cuatro .
 
Oh , and Lopadotemachoselacho galeokranioleipsanodrimhypotrimmatosilphioparaomelitokatakechymenokichlepikossyphophattoperisteralektryonoptekephalliokigklopeleiolagoiosiraiobaphetraganopterygonis is a food dish mentioned in Aristophanes' comedy Assemblywomen .
 
1.) – wave particle duality
- light exists as particles
- light particles move in a wave like manner
- a “photon” cannot be observed as a particle and a wave at the same time when undergoing measurement.
- All these points are the same for all objects.
2.) Overlapping oranges ( :
3.) Dark matter is hypothetical matter that is undetected by its emitted radiation. Its presence is inferred from gravitational effects on visible matter; a dark matter component has more mass than a visible component of the universe and is believed to not interact with ordinary matter and contain no atoms. Possible particles that make up dark matter are axions or super-symmetric particles.
4.) –an asteroid hits the earth. If this happens, then people obviously die. Then after this, the climate will change. This will lead to the end of the world. Another possibility would be that it does something like the dinosaurs. The asteroid will take out a part of the world. This will affect he food chain because there will be a shortage of food for some organisms. This will then lead to more deaths eventually wiping out all living beings.
-The Big Bounce derives from the oscillatory universe or cyclic repetition interpretation of the Big Bang. According to one version of the Big Bang theory, in the beginning the universe had infinite density. Such a description seems to be at odds with everything else in physics, and especially quantum mechanics and its uncertainty principle. quantum mechanics has given rise to an alternative version of the Big Bang theory. Also, if the universe is closed, this theory would predict that once this universe collapses it will spawn another universe in an event similar to the Big Bang after a universal singularity is reached or a repulsive quantum force causes re-expansion.
-The Big Freeze is where continued expansion results in a universe that is too cold. It could occur only under a flat geometry. It could also occur in a closed universe. we could also have a Heat death, which states that the universe goes to a state of maximum entropy in which everything is evenly distributed, and there are no gradients — which are needed to sustain information processing, one form of which is life. This requires that the universe reach an eventual temperature minimum.
 
5.) Type 1 Supernova Lacks hydrogen and presents a singly ionized silicon (Si II) line at 615.0 nm (nanometers), near peak light. Non-ionized helium (He I) line at 587.6 nm and no strong silicon absorption feature near 615 nm. Weak or no helium lines and no strong silicon absorption feature near 615 nm. Type 2 Supernova Reaches a "plateau" in its light curve. Displays a "linear" decrease in its light curve (linear in magnitude versus time).
6.) 5,7,11.
7.) the assignment was to watch the video and respond saying if you watched it.
8.) The Chandrasekhar limit, limits the mass of bodies made from electron-degenerate matter. This is a dense form of matter which consists of nuclei immersed in a gas of electrons. The limit is the maximum nonrotating mass which can be supported against gravitational collapse by electron degeneracy pressure. is commonly given as being about 1.4 solar masses. Use of the Chandrasekhar limit is fundamental in analyzing the evolution and demise of stars.
9.) grand universal theory.
10.)The m theory is a new limit of string theory and allows 11 space -times to be identified . This is based on previous string theories .
11.) 2,555 tiles in the bio wing
12.)209 lockers in the bio wing
13.) Lopadotemachoselachogaleokranioleipsa nodrimhypotrimmatosilphioparaomelitokatakech ymenokichlepikossyphophattoperisteralektryono ptekephalliokigklopeleiolagoiosiraiobaphetraganopterygon is a food dish mentioned in Aristophanes' comedy Assemblywomen.
14.) 314 receptors accommodated.

onnnne
twwwwwo
threeeee
fouuuur



ryan, you're nuts.
 
1.Light consists of both waves and particles, particles of light are the smallest pieces of matter, particles move in a wave motion, A photon cant be seen as a particle and a wave at the same time, any of the thing are true for any object.

2.its like 2bubbles overlap.

3.gravity.
particles that make up dark matter are axions.

4.Gamma-ray burst. it is when 2 stars collaspse. the gamma-ray burst will destroy the o-zone layer.that will cause skin cancer and other dieseaces. this ray will be brighter than the sun. it kills the photosynthetic plankton which provides us oxygen and kill us. it will bolster the bottom of the food chain

Collapse of the vacuum. it is like the ice nine is the book cats cradel. it is very quick. it will be a blast of energy. this blast will leave nothing behind and kill us in just seconds. the universe cools and makes bubbles of this. it could spread to this universe.

Rogue black holes. black wholes swallow everything. we might run into a dangerous black hole. it will crush us within minites.Earth might get drawn into an elliptical path that would cause extreme climate swings. it might be ejected from the solar system. it will be out in the middle of space.

5.type 1 supernovae is a massive pile of white dwarfs which creates an uncontrolled fusion.

type 2 supernovae occur at the end of a massive star's lifetime, when its nuclear fuel is exhausted and it is no longer supported by the release of nuclear energy. If the star's iron core is massive enough then it will collapse and become a supernova.

6.mr.johnson mentioned the numbers 3 , 8 , 18

7.we had to say we watched the video of you talking.

8.The Chandrasekhar Limit is the limit of mass of bodies made from electron-degenerate matter. it is applied to find the biggest white dwarf stars.

9.Hexahedron Theory

10.the m theory is that 11 dimensions of space can be identified.

11. there are a lot of tiles in the bio wing...19455 tiles

12. 206 lockers in the biowing.

13.it is a shape with a sh** load of sides :)

this isnt a quiz it too easy for a quiz muhahaha (-_-)
 
(-_-) thats what the last thing was supposed to be
 
due date has past
go study biology
:)
hj
 




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