#Underland - Robert Macfarlane - Review

 


    A kind of travel book, "Underland" presents the world beneath our feet.  It explores the archaeological facts of rare places on Earth and covers caves, ammonites, sinkholes, gorges, and.... the tragedies associated with them. The author presents caving history around the Oxford philosophy student Neil Moss as the most notorious one. It is about the Peak Cavern near Derbyshire, 1000 feet from the entrance he was stuck and died out and the place was converted into a tomb of Dark matter with molten cement being poured and sealed. 

     There is a slight deviation from 'under' to 'above' as the author discusses dark matter and gravitational lensing, which slightly evokes interest in reading. The 5% of the Universe's mass is made of matter we can touch and the rest of it we have to feel- is the most mysterious thing about our existence. The search for Dark matter has produced a network of working sites and labs that are dedicated to research.  It seems to resemble what we call religion rather than what we call science. Thus, we have proved to be good historians but poor futurologists. Mutualism is the fascination between organisms. Plants and fungi find a lot of descriptions in the book

     The second chamber (chapter) has what we have been reading under 'kahaf' where seven sleepers of Ephesus - the people of kahaf- fleeing religious persecution in the city of Ephesus go into 300 years of sleep and wake up in a different era - though here it is described by a painting.

     Arctic landscape and Anatolian Plateau to Paris and Mediterranean find description followed by quarries below the Paris town and many surrounding areas. The author likes the sound of sleep exhausted by nerves and travel. It is here that there is a reference to manholes. Opening manhole covers the sewer workers, particularly in India,  should be happy on seeing flies and cockroaches, which means toxic gases haven’t gathered in there.

 As there is no continuity to the narration, here are some excerpts from the chapters:

     The history of the river in Italy with the Northern cape of south Africa where scuba divers have died is described in an agonizing colour. There is a mention of the decayed body of Dreyeres's head, the Abyss of Caros, the Slovenian highlands of Austria Hungary Italy, and limestone rocks.

     That 1000 years of snow going on to become glaciers coated with millions of trees on iced and frozen canopies is intriguing.

     Lofoten of Norway and its description is attractive throughout the chapter and carries on to the Ardeche Gorges Andoya of Norway where Nuclear waste is buried is mentioned. The drill for oil at Lofoten and Vesteralen is portrayed as industrial pollution and the author says: "What we excrete comes back to us". Karakorum fighting of India with its neighbour and the slaughtered human bodies is described as gruesome.

     Mining licenses given in Greenland Narsaq, Worlds largest Uranium deposit was amazing to learn. Neils Bohr visited here in 1957 as China-Australia joint company took to mining.

     Ice has memory and remembers details for millions of years, now with plastics, crates, kayaks, and melamine cups there is more capping to this withered cream of the Earth. Compressed ice in Antarctica acts like a blanket trapping geothermal heat and when bedrock ice absorbs some heat they melt slowly.

     There are nearly 500 or so freshwater lakes beneath Antarctica's ice and the Polar bears can smell food sources 20 miles away. There is more penning of Greenland than any other underland on this Earth; this is interesting as it has a reservoir of undiscovered life and aura.

     The meltwater of Knud Rasmmussen glacier is presented with Northern lights background - Olkiluoto in Finland has another Uranium reserve and the author says it was created in a Supernova explosion 6.6 billion years ago. This is really thrilling that cold places can have radioactive deposits. Going with Uranium the author describes its rods that can remain hot even after decades of cooling in a Pool!

     Katabasis - But for every Theseus who enters the labyrinthine darkness of the Underland to triumph against the Minotaur there are many more Eurydice who never returns. Such fears, Robert Macfarlane points out, are embedded deep in our language where “height is celebrated but depth is despised. To be ‘uplifted’ is preferable to being ‘depressed’ or ‘pulled down.”

     Nevertheless, his journeys deep into the earth “far from the human realm”, is melancholic and claustrophobic, and are occasionally correctly frightening. Macfarlane remains obsessed with the fear and fascination generated in the human heart by extreme landscapes, and he clearly savors the adrenaline rush.

     Underland is, as its title suggests, “a book about burial and unburial and deep time”, “the awful darkness inside the world”, “of descents made in search of knowledge”, to study the places where “we have long placed that which we fear and wish to lose, and that which we love and wish to save”.

     Coupled with history, geography, and some science, this book is, also, for those who would like to go on adventures. I had a slight feeling that should a movie be made with appropriate music it would be worth watching like "127 hours" - where A R Rahman's music added to the icing on the cream of the incident.

 

#The_Interstellar_Age: Inside the Forty Year Voyager Mission - by Jim Bell - Review



This is an awe-inspiring account of how the twin Voyager space probes, launched by NASA in 1977, have traveled farthest into the Cosmos than any other human-made machine. Now about 23.5 and 19.5 billion kilometers from home, Voyager 1 and Voyager 2 became the first and second spacecraft to exit the solar system in 2012 and 2018 respectively. (Watch live status here: https://voyager.jpl.nasa.gov/)

Planetary scientist Bell, who worked on the mission from the time he was an undergraduate, chronicles the two probes' journeys, their revelations about our solar system, and the many people who have dedicated their careers to the mission, including an account about orbital dynamics engineer who helped to design many of the critical slingshot maneuvers around planets that enabled the Voyagers to travel so far. A theoretical aspect includes the timing of the launch when the 16-year planetary alignment was just right for the rendezvous with the giant planet. 

The book mentions with ache the sleepless times spent over several missions, including its immediate predecessor the Mariners along with Magellan, Pioneer, Galileo, Cassini, and of course, the Hubble space telescope. The Engineers behind all these missions, the author pretends, needed to be paranoids!

The JPL's commands were interesting to read:

Fly to a certain place

Turn on the camera

Point it in that direction

Take 12 photos

Turn off the camera

Turn on the magnetic sensor

Collect those measurements

Transmit 

Restart camera

For every mission, this probably was the mantra for success, and the code.

It is here that I came across Carl Sagan's suggestions to include “golden records” loaded with pictures and sounds—from whale songs to Bach to Chuck Berry—to represent our planet to any extraterrestrial beings that might encounter. The lines "Jaat Kahan ho" by Surshri Kesar Bai was included among 27 other songs. Here is the list of other included things that have flown out of Earth:

"Hello to everyone, we are happy here and you there"

Diagrams of DNA - recipe of life on Earth

Maths definitions

Physics unit definitions

Solar system, parameters, and solar spectrum

Egypt and its river Nile - Red sea

Anatomy of man, the fertilized ovum, Fetus, and other 116 items

And we still now know that no one has acknowledged the encounter of these!

The middle part of the book carries interesting aspects of astronomy including how they were looked upon by astronomers in the 1970s because at that time most of the measurements were based on optical telescopes only. There is an account of atmospheres of Saturn and Titan, Tethys and Mimas, Enceladus and Rhea, Io and Dion, and this really instilled a chill interstellar aspects into my inception of what really interstellar is. Jupiter could accommodate more than 300 Earths and has saved the Earth from several meteor hits by swallowing them into its atmosphere (due to huge gravity). One single rotation of Jupiter is about 10 hours despite its size and its magnetic field is great and is about 5 times larger than the moon. 

Here are some other highlights:

# The Uranus hemisphere is dark for 42 Earth years and then this reverses between North and South. 

# Gofer is the word the author has used to describe persons who go for this and go for that and there were a lot of  them at the JPL 

# Building images is a stricter part esoterically 

# A KB object, Eris is about 1500 miles wide with a moon called Dysnomia

# No particle from any galaxy can pierce the bubble of the suns heliosphere 

# Robotic planetary mission cost related with the dog toys for a year by Americans

# Heliopause - edge of the heliosphere

# Discovery of Earth-like planets is by tiny wobbles in stars' motion caused by the gravitational tug of planets orbiting around but with a lot of time!

# The risk of any tiny particle hitting the spacecraft has been described as equivalent to stopping a tractor at 50 mph using a housefly (Voyager's speed is 36000mph)

The Voyager spacecraft are our farthest-flung emissaries moving on still and at about 22 and 18 light hours away from Earth, respectively!

The book has an end chapter "The End?". The author probably means that there is no end in sight to the interstellar (discovery) era as Juno, another spacecraft is presently now inside Jupiter and Voyagers are still moving! Overall, reading this book could give us a feeling of connectivity to Universal Consciousness.

#The_Joy_of_Science - Jim Al-Khalili - Review

     

    This is perhaps the first book in my career that I could finish in a single go over a trip to Hyderabad, which implies that Jim Al-Khalili's lucid writing did not allow me to stop anywhere. Though the book has no new information it just glides over the facts on how to master knowledge related to science - or shall I say epistemology?

The title “The Joy of Science” is somewhat a misnomer because it harps only over the previous knowledge of the science of any person without which this would just be a prologue to some advice on writing about Science. The book consists of 8 short chapters that essentially amount to a brief textbook on critical thinking. Many probably won't need these instructions, but for more seasoned readers, there’s not a whole lot of new material, particularly for those already familiar with the works of Carl Sagan, Richard Dawkins, Michio Kaku or Richard Feynman. Here I am presenting the gist of the chapters.

1. Something is either true or it isn't: This part is very general in which the author talks about the opinions which are more valid than evidence. In science, we use different models to describe nature, and thus it is important that we gather data and be true to it. Data Dredging - also known as p-hacking- has been the order of the day where data is misused deliberately in order to find something that can be presented as statistically significant. This part, I felt, recommends us to go for modeling of science and use intelligence to arrive at certain conclusions. What do you feel when someone says Humans have walked on Moon?  If the answer is nay, then you belong to that huge group of conspiracy theorists who with half-baked knowledge are ruling the internet.

2. It's more complicated than that: Again the concept of believing in science is discussed with a few examples where people do not accept the facts of science. The theory of evolution implies that life evolves randomly and without purpose but this goes against the religious beliefs of a few. The idea that simple explanations are more likely to be correct than complicated ones is known as Ockham's razor. Likewise, the Theory of Relativity finds mention with a reference to the cosmological constant that was removed and later included in the theory. 

3. Mysteries are to be embraced, but also to be solved: There are three types of mysteries, the author says - i) Those that can be explained but cannot be predicted, like Earthquake, Pandemics, etc. ii) Those that are yet to be explained but that exist physically, like the purpose of Stonehenge, nature of dark matter and dark energy and iii) those that cannot be explained rationally like ghosts, fairies, worldly apparitions, and aliens. The purpose of this book, I understood here, was to convey the entire aspects of the Pandemic that shook the entire humanity, on a scientific basis.

4. If you don't understand something....: Well the title itself is so long and it tells us that nothing is beyond our understanding. Anyone with a deep knowledge of the subject, whether a plumber or a musician, will gain knowledge through dedication, time, and effort. It is here that I got to know about the 'Imposter Syndrome' - the feeling that we are not up to a task entrusted to us or that others' expectations of our ability are higher than our own - that I had this one in my earlier part of the academic career. A kind of soft-skill objective can be felt reading this chapter, particularly for the teachers and the students alike.

5. Don't value opinion over evidence: This chapter proved to be the crux of the entire write-up. Because of the huge amount of misinformation through the meta-media and the tendency to glue to the "breaking news" media, we often give out our opinions without proper evidence or logic. We have failed to discriminate between what is important and what deserves our attention. Science requires a certain level of commitment to understanding. The authors go on to make us evaluate ourselves over one of the old paradoxes in physics - that if you can travel faster than light and if you hold a mirror, would you be able to see your image? Yes!

6. Recognize your own biases...: Again a longer title for this chapter that deals with a piece of advice for the incompetent. If you are incompetent you can't know you are incompetent!  The skills you need to produce the right answer are exactly the skill you need to recognize what the right answer is. This has a name too - The Dunning Kruger Effect. Solipsism is a view or theory that the self is all that can be known to exist.

7. Don't be afraid to change your mind: Nowadays, it is impossible to distinguish between fake and real images, videos, or audio, and likewise what is fake and what is real is beyond cognition. One needs to develop strategies to deal with this. Artificial Intelligence comes to the rescue!; for example, the author compares climate change denial to receiving an unfavorable diagnosis from a doctor. It goes like this: Upon receiving the diagnosis, you decide to get a second, third, fourth, and fifth opinion from the best doctors in the world, who all confirm the original diagnosis, presenting to you all the evidence in its favor, including x-rays, lab tests, etc. You then receive a sixth, more favorable diagnosis from a less reputable doctor and conclude, based exclusively on that one assessment, that you’re perfectly healthy after all.

8.  Stand up for reality: It is widely acknowledged that things are likely to get worse before they get better - a scientific method that the author advises us to follow. We trust in science because it works and because we recognize where we would be without it. 

     Conclusively, the author provides some good information and uses some compelling and thought-provoking analogies to drive home his points - particularly how to enjoy science and the joys associated with it.



#Algorithms_to_Live_ by - Brian Christian & Tom Griffiths - Review


# Beginning a book has always been a tougher one and if good, finishing it off is that much easier.   This one starts with a few flashes of things around our lives, exemplary classified into technical and     logical terms. I was captivated by much of this book wherever the author used past events to tune into the future with more coherence, citing several laws unknown to me. Although this book is subtitled   'the computer science of human decisions, it's really about the    intelligence of human decision-making (which is often supported by computers) - I suspect the 'computer science' label is to make it more attractive than boring old  mathematics.   The  book  tends to skip   over the    mathematical    workings,   concentrating on the outcomes   and   how   they're   relevant   to   the kind of   decisions  we  make  in  everyday  life -  and it is that application side that makes it particularly interesting.

Here are some chapter-wise (book) markings:

# The ‘Secretary Problem’ deals with when should you stop interviewing a secretary candidate because the last one to be interviewed is just based on time and not on talent. It might seem there can be no sensible advice, but mathematically it's very clear. You wait until you've got through 37% (an empirical rule) of the choices, then pick the next one that's better than any you've seen before. It's not that this will necessarily deliver your best of all possible worlds. But it will give you a better result than any other mechanism for deciding when to go for a particular option.  The authors point out that there are approximations to get around this, which include that the approach can also apply to the amount of time available for the process. There are several such corollaries in our lives nowadays, particularly the feeling that if we could have waited a few more days we would have got a better mobile.

Gold digging is more likely to succeed than a quest for love.  The author stresses the need to evaluate the choices. Some problems are better avoided than solved.

Quote: Stopping early and starting late are two ways to fail.

# Explore / Exploit: Gathering information (by all means) is all about the second chapter. You are more likely to explore new restaurants when you are moving into a city than when you leave. There is this mention of clinical trials which have often been the subject of some movies and the author points here to the 40 years of trial on human syphilis that was halted as it was notoriously anti-health and is a grim reminder of the uncertain ventures which humans always do.

Who would you like to spend time with – family or friends. Older people preferred family and young ones not, but they later changed their opinion after some ordeals. So, experience counts.

Quote: To try and fail is at least to learn: to fail to try is to suffer

# Cache: The concept of caching can revolutionize your filing system. The Akamai is into the caching business and has been a pioneer in the system as it handles about half of the entire internet traffic in the third world. The problem is not storage but organizing. This section is reveling to read. There is a reference to how IBM evolved.

Quote:  Forgetting is as important a function as remembering – the mind has an infinite capacity for memories but only a finite amount of time to search for!

 # Scheduling: This section deals with interesting aspects of timing or prioritizing and mentions the “Gatt chart” that was used to build the Hoover dam and has assisted IKEA, Amazon, and SpaceX in scientific management. The author suggests that the earliest due date is optimal for reducing maximum lateness. An interesting incident of priority reversing caught my attention. The incident is related to Perseverance – the spacecraft to Mars that was programmed to take and send pictures from 309 million miles. The high priority of the robot was to move the data in and out of the information bus. But due to scheduling, the robot was neglecting as the system resources were prioritised over that. The multimillion-dollar project would have failed if the engineers from the Earth did not re-program it to re-schedule and change priorities (read IRQ).

When you switch tasks you pay a price. Humans have this tendency and the author comes up with the mention of a few rules such as Bayes’s Rule (communicates a sensible strategy for gauging your expectations and then revising them as new information comes in), Laplace Law, and Copernicus principle. The Laplace law was interesting to me as it gave a simple formula to win; (w+1)/ (n+2) – where w is the winning ticket and n is the number of attempts. While talking about these things I had a slight notion that the author was talking about order and disorder of things and in thermodynamics we have the third law to govern these things (read entropy). Things that tend towards some kind of natural value and things that do not, are the two types of things.

Then this Multiplication rule made an interesting entry – the total wait people expect is one and a third time as long as they have waited for. Marshmallow test over children who wait suggested that slow learners or those who wait had better future or rather mature future.

Occam’s razor principle, nevertheless old, has a new foray “all things being equal the simplest possible hypothesis is probably the correct one’’.

Quote: Things which matter most must never be at the mercy of things which matter least. Do the difficult things when they are easy and do the great things while they are small.

#Relaxation: It teaches us to simplify problems to gain traction on them, to not let the perfect solution be the enemy of the good enough, and when to disobey the law. There is Lagrangian relaxation, where the main idea is to relax the problem by removing the “bad” constraints and putting them into the objective function, assigned with weights.

Randomness encourages us to lean into the role of uncertainty and to latch onto small improvements and happy accidents. This section also deals with the ‘Monte-Carlo’ method and its origin. Stan Ulam, who also helped develop the atomic bomb suggested this method based on the famous card play pop-ups in Monaco. That sampling can succeed where analyses may fail is the heart-line of this concept. Replacing exhaustive probabilities and calculating with sample simulations have been very successful and we use these methods in Quantum Mechanics still.

Quote: The perfect is the enemy of the good.

# Networking is a fun dive into the world of communication, and the algorithms that govern our interactions online. From Packet-Switching to Circuit-Switching the section deals with the advent of networking, and wireless as well. There is a mention of the paper by Gordon and Prabhakaran on the ecological study that relates an algorithm on networking to be about a million years old. Obviously, humans have been on the logic route for long!

Peters’ principle that we often hear made a sensible end to this chapter: Eventually every spot in an organization will come to be filled by someone doing that job badly. I enjoyed a loud laugh in my mind because is it not this thing that is happening everywhere now!

Quote: Now is better than never - Zen

# Game theory is about the mind games we play when trying to anticipate the thoughts and actions of others, and how those mental models play out from poker to work schedules. I know, you know that I know, I know that you know that I know, the three levels reminded me of six types of personalities clashing when two persons talk. Dominant strategies avoid recursion altogether. The optimist proclaims that we live in the best of all possible worlds: the pessimist fears this is true. The Game theory offers a suitable answer – Happiness is the lock.

 Christian and Griffiths conclude with a pitch for "computational kindness" where we can use our knowledge of algorithms to reduce the amount of mental work we have to do. We can design a society with optimal laws and incentives that make the right thing the easiest thing. At the end of this session of the book, I just felt I have sharpened my approach to what logic is and I feel that this book lives true to its title. A lot of work and plenty of biblical references make this book worth keeping, reading, analysing, and diving into all sorts of logic. 

#Limitless - Tim Peake - Review


If you have read Scott Kelly's  "Endurance", prior to this "Limitless", then I bet you would be left to compare which one fared better in terms of achievement and narration around an astronaut's life. Scott overcame several hurdles including his own health and spent more than a year in space, while Tim mentions more of hard work and luck. 

    Tim definitely went through his challenges, had his doubts, and fought for what he wanted. The repeating narration of several sorties and the description of those places and flights simply might look like you are reading a diary of flight personnel. The book made me go slow on reading these and at one stage I stopped reading completely because it appeared more of military or army missions than any challenge related to space or science. He mentions a lot of traveling, going on endless courses, and playing many pranks, which usually would not evince interest in readers of science. It appeared like an account of a military man showing his durability with missions and moving effortlessly towards every objective put forth by the army of his superiors. His experience with Parachutes on ice, (one at 125 mph and about 14000 ft)  and jumping along with synchronized maneuvers is a bit thrilling and his description of small sorties, particularly with Apache helicopters, take up enough space. Something to learn was the smell of the helicopters, which were always metallic, and the dead man's curve - a graph specific to each type of helicopter.

    That the military has the balance of seriousness literal life and death but also allows one to have a good group to back you up and reckon life with.  However, it is noteworthy that he spent 18 years in the military, constantly thriving and looking for opportunities to push himself before it occurred to him that he could apply for astronaut training.  

After 'fast reading' a few chapters, I found some interest in the last section of his book. The selection from among over two thousand applicants for the post of five astronauts and subsequent interviews at various geographical locations were the only challenges for him. Because ESA has its offices all over Europe, every other round was in some different location. Being an English, he writes, there was no big ordeal in attending those interviews. But he does describe the efforts he had to put in more so because at some point the UK was not interested in sending its citizen to space. At this point of time, he had to take up canvassing for space travel with various government and political officials and organisations. He had a tough time convincing these officials as to why space travel and research were important. Finally, after months of hard toiling, the participation of the UK in the ESA's mission was confirmed. 

    He spent five years in training, learning how to cope with G-force and zero-gravity living; the rudiments of the spacewalk; and how to live in isolation with his future crewmates, including the American Tim Kopra and Russian cosmonaut Yuri Malenchenko - with whom his mission was planned. This followed several tests related to his body (health) and the interesting one, that frustrated him, was clipping the ear to get a blood sample for lactic acid analysis. Passing by, he writes about Scott Kelly and the NEMO missions too. He mentions a sharp analytical mind along with a well-known sense of humor as a key factor for his selection. 

    At some point, he mentions that he would have been there with Sarah Brightman which made him feel dejected because it was thought that her name might fetch some funds for the project - with a reference to a space tourist as he mentions Anousheh Ansari. The ESA mission he flew was named after Newton's seminal work 'Principia'.

    When you were being taught how to do a section attack you were deliberately overloaded with information so that something would be bound to go wrong. That sums up his endeavor with the selection and meeting the mission.

    Finally, the ordeals with the Russian rituals do come up in his writing where he mentions the compulsory possession of coins pressed by trains during the journey from the base camp to the launch pad. And the pissing over the left rear-tyre of the transport vehicle which brought 'good luck' to Yuri Gagarin just makes you wonder how much superstition still is a challenge with the scientists. His launch account is interesting and as soon as he reached space he praises the experience of life and narrates the ordeal he went through after tweeting about a wrong call he made to his sister from there. 

    Very enthusiastically he talks about the spacesuits and the space-walks, one of which was abandoned as a huge water bubble lurked suddenly in the helmet of another astronaut who was with him. He describes the Soyuz landing as somebody hitting you with the baseball bat after you are tied to a metal chair.  There were ups and downs on his return. He got vertigo in the shower after return (something to do with the water rushing past his ears) and readjusted to the constant wearying pull of the Earth. 

    During his stay, he writes, a staggering 33 million people were engaged with this mission and about 2 million children took up projects. That is a huge data! This is probably the first book that crossed the Pandemic of 2020 while writing. He mentions this dark onset very casually. 

A quote from his book: Be ready for life never to be same again - Frank De Winne

#Helgoland - Carlo Rovelli - Review

                                                                               


If you have read Manjith Kumar's "The Quantum", then Rovelli’s new book, "Helgoland", would appear a paled down version of the former. However this book apparently attempts to explain the complex theory of quantum mechanics from the view point of a specific scientist - Werner Heisenberg- and a particular place. Helgoland is a rocky, barren, windswept island in the North Sea to where the 23-year-old that scientist, a German physicist fled in June 1925 to recover from a severe bout of hay fever and was in need of solitude to think.  Quite ostensibly the author begins the book with lot of historical facts and one such fact that attracted my attention was the Goethes' love and poem for Islam.

The initial address is more philosophical, like everything should be based on what one sees and not on what one assumes to exist.  Reality and Experience thus are important forbearers of these.

There is this astonishing mention of the fact about Neils Bohr being kidnapped in a British Commando raid and taken out of occupied Denmark to England where he was received personally by Winston Churchill. It was probably some sort of exercise in those war-torn era to extracts facts about USA's Nuclear mission as later he was sent back to USA.  The fact that atomic bomb had killed nearly 200000 persons in a fraction of seconds in the first attempts itself is scary.

Schrodinger's scandal is passively mentioned where he was accused of fathering two of his students! His wife would go on to comment "You know it would be easier to live with a canary bird than a race horse, but I would prefer race horse", is bizarre.

With the light touch of a skilled storyteller, Rovelli reveals that Heisenberg had been wrestling with the inner workings of the quantum atom in which electrons travel around the nucleus only in certain orbits, at certain distances, with certain precise energies before magically “leaping” from one orbit to another. Among the unsolved questions he was grappling with on Helgoland were: why only these orbits? Why only certain orbital leaps? As he tried to overcome the failure of existing formulas to replicate the intensity of the light emitted as an electron leapt between orbits, Heisenberg made an astonishing leap of his own. 

He decided to focus only on those quantities that are observable – the light an atom emits when an electron jumps. It was a strange idea but one that, as Rovelli points out, made it possible to account for all the recalcitrant facts and to develop a mathematically coherent theory of the atomic world.   But he kept the question literally open, "Are the laws of nature really not deterministic?" Our world is understood to be non-deterministic and essentially unpredictable; moreover it works in ways that often strike us as non-intuitive. Quantum theory invites us to see the world as a giant cat’s cradle of relations, where objects exist only in terms of their interaction with one another. Ultimately, says Rovelli, Heisenberg’s is a theory of how things “influence” one another. It forms the basis of all modern technologies from computers to nuclear power, lasers, transistors, touch screens and MRI scanners.

For the Plancks' constant without which our Master's degrees are incomplete there is a mention that Planck himself was not sure about it or rather said that without understanding it. You multiply the position by velocity to get an approximate value of it! But from quantum Computer to atomic bomb this factor has come to stay. The simple formula, "xp-px=i", indicates us to look towards the mathematical tables (“matrices”) to predict the electrons’ wave mechanics nature. His work was soon refined by other forward-looking physicists such as Erwin Schrödinger and Paul Dirac. Quantum theory was sired out of Heisenberg’s observations and Einstein’s earlier relativity theory. When the electron does not interact with anything, Rovelli argues, it has no physical properties. It has no position; it has no velocity. 

Here are some worthy lines that are quoted directly to preserve the impact:

# "You should never express yourself more clearly than you are able to think"- Neils Bohr said and Schrodinger demonstrated it with his Imaginative Cat experiment

# The debate between Bohr and Einstein went on for years and has become a subject of many books, conferences, themes of seminars and letters. 

# The wave nature of an electron is a real entity in "Many-Worlds" interpretation in addition to real and actual electron - David Bohm

# Doctors cannot evaluate a patients' mind without affecting them!

# The vast world is not made up of scientist in Laboratories or instruments of measurement. What is an observation when there is no scientist observing? - Scientists and instruments are all part of nature. This is referred under a coined word "Qbism".

# The electrons do not follow an orbit because its physical properties are only those that determine how it effects something else, e.g. light that it is emitted when it is interacting. 

# A property may be real only with respect to a stone and may not be to all. 

# The individual is bourgeois fetish - Bogdanov.

#Basics of one science are understandable in other branch of science.

# In the Q world it is made  up of happenings, discontinuous events without permanence - Qbism. 

# Uncertainty principle: We have gathered maximum information about an object but it is still possible to learn something unexpected about it. The is not determined by the past , the world is probabilistic!

# How can you think that the experiments in a lab made with a little bits of metals and glass can have such significance as to put into a question  ' how the world works'.  We still live at the bottom of deep gravity well.

# The world is not divided into stand-alone entities . It is we who delve with objects for our convenience.

The author gets help in the form of one of the most important texts of Buddhism, Mūlamadhyamakakārikā, or The Fundamental Verses of the Middle Way. Written in the second century by the Indian philosopher Nāgārjuna, its central argument is simply that there is nothing that exists in itself, independently from something else. It’s a perspective that Rovelli believes makes it easier to think about the quantum world. He may be right, but the words of Niels Bohr still come to mind: “Those who are not shocked when they first come across quantum theory cannot possibly have understood it.”

Brain does not work like we think on seeing. Signals do not travel from eyes to brain, rather they go the other way from the brain to the eyes. (it expects something it knows and previously occurred)  and predicts what the eye should see.  because what would be the point of sending signals towards the brain that do nothing but confirm what it already knows. 

We dream an image of the world based on what we know. The world that we observe is continuously interacting; it is better understood as a web of interactions and relations rather than objects.

Individual objects are summed up by the way in which they interact. If there were an object that had no interactions, no effect on anything, it would be as good as non-existent. Like most other authors views on 'Observation and Interaction', this book made an interesting reading on relativity. 

#Fundamentals:Ten_Keys_to_Reality - Frank Wilczek -Review


This is a book by a Nobel prize-winning Physicist offering ten keys to help in understanding the world in a manner consistent with development of physics in particular and science in general.

Professor Wilczek offers ten “fundamentals” upon which we can build a view of nature consistent with what we have been learning about the universe lately - which is quite a lot. 

Here is the list that makes an interesting topic, to begin with

1. Plenty of Space

2. Plenty of Time

3. Very few Ingredients

4. Very few Laws

5. Plenty of Matter and Energy

6. Cosmic History - Open Book

7. Complexity Emerges

8. Plenty more to see

9. Mysteries remain

10. Complementarity is mind-expanding

The first chapter begins with fundamentals like dealing with GPS, simple laws of nature, organised matter, and a hierarchy of structures like those of planets. The concept of space and matter is discussed, whilst space occupies most. This chapter also mentions how lenses work using the laws of diffraction.

The saying "Time is what prevents everything from happening at once", by Ray Cummings is mentioned (often quoted). Tiny errors in time multiplied by the speed of light can lead to noticeable errors in the distance is what Google Maps has to offer at times (particularly inside Indian towns). Here are some excerpts from the book that is good for most beginners who would want to explore questions in science. 

Only 'atoms and Voids', by Democritus is modified into 'Mass, charge and spin with voids'!

Einstein calling Bohr's (remember their debates) work as the highest form of musicality in the sphere of thoughts.

The Abundance of Cosmic energy reaching the Earth/day is measured as equivalent to a human's 2000 Calories/day energy - which approximately comes to a 100W bulb continuously burning for a year. And a new unit as AHUMEN is coined when 'Watts' becomes 'Joules'.

Three crucial ingredients are considered making life possible on Earth: Temperature, high and low, and intermediate Energy scale. (It is hard to agree when you have so many particles in Physics to counter)

Science often resembles the game of jeopardy where answers suggest what the right questions are!  Studying what happened in the past is like reconstructing the crime survey with the evidence from cases and look for corroborating evidence. 

A chapter devoted to 'Universe' says Cosmic Inflation is justified as the big bang assuming the space as Euclidean or flat - not required by relativity (a hint that relativity is of two types).

Finally, in the last chapter, the author talks about knowing the importance of Science. The chapter deals with the mention of the sensors in animals and humans. While humans have 6 million receptors to identify the incoming molecule in the nose, dogs have ~300 million receptors! Then there is talk about navigation in birds (Chromoprotein), the Strength of spider's net (nanomaterials), and Bee's sensitivity (receptors).

There is a good attempt to explain the recently discovered/confirmed 'Gravitational waves' - space-time tells matter how to move, matter tells space-time how to bend and so space-time is a form of matter! Similarly, Electricity and Magnetism that have complementary effects can be related to 'moving mass' radiating 'gravitational waves' - but there is a quantitative difference. 

Omar Khayyam's couplet on 'Hearts desires' finds a mention without the original quote.

Some mention about 'illusions' in the world is followed by a reference to a huge amount of work by Ramachandran's work on brain neurons (and illusions, thus).  A corollary to that effect is how we perceive gold bars which provoke our attention immediately but never are we bothered about the equal amount of gold atoms swimming in the ocean! Then a sleek mention about Noise Cancellation technology pops up and the cosmological constant finds mention with a few Einstein-Bohr debates (Quantum by Manjit Kumar is a leading book on that). 

Science is a fruitful way to understand optical delusion, a kind of prison and the Universe is a strange place and we are all in it together.

Arising curiosity around basic questions, facts, and dazzling speculations, Wilczek investigates the idea that forms our understanding of the universe: time, space, matter, energy, complexity, and complementarity. He explores the history of fundamental science - what we know and how we know it, while journeying to the horizons of the scientific world to give us a glimpse of what we may soon discover. 

#The_God_Equation - Michio Kaku - Review


The book starts with the need for string theory with assumptions like, What happened before the Big Bang? What lies on the other side of a black hole? Are there other universes and dimensions? Is time travel possible? Why are we here? etc. The author tries to converge over these questions with an imaginary example "if we pluck a rubber band enough times and in different ways, we create all known sub-atomic particles", thus hinting an answer over the answers leading to String theory.

String theory is the theory that would give us the 'theory of everything'. Since he has been working on this over a long period he promises a 'balanced, objective analysis of string theory's breakthroughs and limitations' very soon - at one point we are told that the concern about string theory is the lack of evidence for the required 10 or 11 dimensions. Kaku points out that, if they exist, they should have a small impact on the force of gravity over small distances. He describes an experiment.... where the results are negative, rather than see this as more indication of the doubtful nature of the theory, 

The beginning part has so much repetition of information that can be found from his early writings and thus they make a boring read and you would want to do a 'speed-read, which I did, of course. The killing of Bruno when he expressed that life exists in other parts of the Universe has been mentioned again.

However, a few new things find mention, like "Faradays' cage" the concept of which has been applied to microwave ovens nowadays.  But then the repetition of the Wave spectrum like if the cells of our eyes were as big as a house, we might probably see the radio waves.

Maxwell is thumbed as a scientist who knew too much Mathematics. If Edison and he were asked to measure the volume of a light bulb the latter would use the Geometrical terms to calculate while the former would simply pour water into the bulb and measure the water to disclose the volume occupied.

The other frequent mention is that of the theory of relativity (for novices there is enough matter) and the distortion of space and time to keep the speed of light constant.  And the dent in the fabric of space is explained with a shotput ball over a mattress.

Here are some known facts that get rerun

# The Einstein-Chaplin discussion of celebrity status 

# The GPS has 31 satellites moving in different trajectories is well known (General Theory of relativity)

# The Gravity's pull if weaker results in faster time

# Schrodinger's Cat playing probability

# QED explanation with infinity (minus) infinity gets explained

# Feynmann's ingenuity gets mentioned with his famous story of cracking secrets of the atomic bomb

# Pauli's prediction of Neutrino

# Weinberg's theory and Nuclear forces get going

# Event Horizon telescope is mentioned (obviously owing to the topic)

# What a Dark Star is

# Hawking Radiation and Schwarzchild Radius and

# A lot about Dark Matter and Dark Energy

A slightly new twist is added to the concept of weightlessness in space, which is the actual thing rather than the no-gravity reality. If the rocket fall is the same as the object fall, then no gravity would be felt. (Remember the Newtown's Cannon Ball experiment)

Like a beginner's almanac of science that succinctly details the journey as well as the landmark discoveries and contributions physicists have made, or are making, as they continue their hunt for a theory of everything, the narration proceeds towards quantum reality. (Because, no, unfortunately, scientists haven't found a way to fuse relativity with quantum yet.)

As is typical with his work, Kaku manages to probe comprehensive cosmological concepts with all accessible narration, succinctness, and delicacy, which actually is the reason why one should complete this book. He makes explanations of gravity, quantum, and nuclear forces not only comprehensible to amateurs but compelling too. And he does so without once compromising the density of the subject matter.

Beginning with Newton and Einstein, veering into quantum mechanics, dipping into dark matter, energy, black holes, the book finishes with a perusal of string theory to show how far we've come in our understanding of the physics of the Universe and how far we still have to go. This is thus a very basic book about quantum theory, string theory, and historical physics. 

What is finally saturating is the mention of God, true to its title. Kaku warrants the proof of starting the Universe by a 'Starter', which is just the God - not the one that is mentioned in the Bible (only for the purpose of obeisance) or any other holy book, but the one which has Cosmological origin and mechanistic logistic propagation into infinite time. 

#Homo_Deus- Yuval Noah Harari - Review



Something I read last year, but forgot to review- so I am posting the abstract of reviews

At the heart of this spellbinding book is a simple but chilling idea: human nature will be transformed in the 21st century because intelligence is uncoupling from consciousness. We are not going to build machines any time soon that have felt like we have feelings: that’s consciousness. Robots won’t be falling in love with each other. But we have already built machines – vast data-processing networks – that can know our feelings better than we know them ourselves: that’s intelligence. Google – the search engine, not the company – doesn’t have beliefs and desires of its own. It doesn’t care what we search for and it won’t feel hurt by our behavior. But it can process our behaviour to know what we want before we know it ourselves. That fact has the potential to change what it means to be human.

The evidence of our power is everywhere: we have not simply conquered nature but have also begun to defeat humanity’s own worst enemies. War is increasingly obsolete; famine is rare; disease is on the retreat around the world. We have achieved these triumphs by building ever more complex networks that treat human beings as units of information. Evolutionary science teaches us that, in one sense, we are nothing but data-processing machines: we too are algorithms. By manipulating the data we can exercise mastery over our fate. The trouble is that other algorithms – the ones that we have built – can do it far more efficiently than we can. That’s what Harari means by the “uncoupling” of intelligence and consciousness. The project of modernity was built on the idea that individual human beings are the source of meaning as well as power. We are meant to be the ones who decide what happens to us: as voters, as consumers, as lovers. But that’s not true anymore. We are what gives networks their power: they use our ideas of meaning to determine what will happen to us.

The philosopher Thomas Hobbes, writing in 1651, called it an “automaton” (or what we would call a robot). Its robotic quality is the source of its power and also its heartlessness: states don’t have a conscience, which is what allows them sometimes to do the most fearful things. What’s changed is that there are now processing machines that are far more efficient than states: as Harari points out, governments find it almost impossible to keep up with the pace of technological advances. It has also become much harder to sustain the belief – shared by Hobbes – that behind every state there are real flesh-and-blood human beings.

We are just at the start of this process of data-driven transformation and Harari says there is little we can do to stop it. Homo Deus is an “end of history” book, but not in the crude sense that he believes things have come to a stop. Rather the opposite: things are moving so fast that it’s impossible to imagine what the future might hold. In 1800 it was possible to think meaningfully about what the world of 1900 would be like and how we might fit in. That’s history: a sequence of events in which human beings play the leading part. But the world of 2100 is at present almost unimaginable. We have no idea where we’ll fit in, if at all. We may have built a world that has no place for us.

Given what an alarming thought this is, and since we aren’t there yet, why can’t we do more to stop it from happening? Harari thinks the modern belief that individuals are in charge of their fate was never much more than a leap of faith. Real power always resided with networks. Individual human beings are relatively powerless creatures, no match for lions or bears. It’s what they can do as groups that have enabled them to take over the planet. These groupings – corporations, religions, states – are now part of a vast network of interconnected information flows. Finding points of resistance, where smaller units can stand up to the waves of information washing around the globe, is becoming harder all the time.

Some people have given up the fight. In place of the founding tenets of modernity – liberalism, democracy, and personal autonomy – there is a new religion: Dataism. Its followers – many of whom reside in the Bay Area of California – put their faith in information by encouraging us to see it as the only true source of value. We are what we contribute to data processing. There is potentially a huge upside to this: it means we will face fewer and fewer obstacles to getting what we want because the information needed to supply us will be instantly accessible. Our likes and our experiences will merge. Our lifespans could also be hugely extended: Dataists believe that immortality is the next frontier to be crossed. But the downside is obvious, too. Who will “we” be anymore? Nothing more than an accumulation of information points. Twentieth-century political dystopias sought to stamp on individuals with the power of the state. That won’t be necessary for the coming century. As Harari says: “The individual will not be crushed by Big Brother; it will disintegrate from within.”

Corporations and governments will continue to pay homage to our individuality and unique needs, but in order to service them they will need to “break us up into biochemical subsystems”, all of them permanently monitored by powerful algorithms. There is a dystopian political aspect to this, too: the early adopters – the individuals who sign up first to the Dataist project – will be the only ones with any real power left and it will be relatively unchallenged. Gaining entry into this new super-elite will be incredibly hard. You’ll need heroic levels of education plus zero squeamishness about marrying your personal identity with intelligent machines. Then you can become one of the new “gods”. It’s a grim prospect: a small priestly caste of seers with access to the ultimate source of knowledge, and the rest of humanity simply tools in their vast schemes. The future could be a digitally supercharged version of the distant past: ancient Egypt multiplied by the power of Facebook.

If intelligence and consciousness are coming apart then this puts most human beings in the same situation as other animals: capable of suffering at the hands of the possessors of superior intelligence. Harari does not seem too worried about the prospect of robots treating us like we treat flies, with violent indifference. Rather, he wants us to think about how we are treating animals in our vast industrialised farming systems. Pigs unquestionably suffer when living in cramped conditions or forcibly separated from their young. If we think this suffering doesn’t count because it is not allied to higher intelligence, then we are building a rod for our own backs. Soon the same will be true of us. And what price our suffering then?

This is a very intelligent book, full of sharp insights and mordant wit. But as Harari would probably be the first to admit, it’s only intelligent by human standards, which are nothing special. By the standards of the smartest machines, it’s woolly and speculative. The datasets are pretty limited. Its real power comes from the sense of a distinctive consciousness behind it. It is a quirky and cool book, with a sliver of ice at its heart. Harari cares about the fate of animals in a human world but he writes about the prospects for homo sapiens in a data-driven world with a lofty insouciance. Homo Deus makes it feel as if we are standing at the edge of a cliff after a long and arduous journey. The journey doesn’t seem so important anymore. We are about to step into thin air.

I end this with a quote that was so meaningful.

"I have always observed that to succeed in the world one should appear like a fool but be wise.” — Montesquieu


#The_Invention_and_Discovery_of_the 'God Particle' - HIGGS - Jim Baggot #Review

The significant discovery of the Higgs boson has been one of the principal reasons why physicists, and chemists alike, were so excited about the LHC; and thus, within the scientific community the announcement was a cause for a major celebration indeed. For most of the general public, however, while the announcement was certainly intriguing, there were many basic questions yet to be answered: Just what was the Higgs boson, and why had it been labeled the God particle? Why were physicists expecting to find it, and what did the discovery really mean?

Jim Baggott's book 'Higgs: The Invention and Discovery of the 'God Particle'' is a kind of remedy to this situation and provides the necessary context that the general public needs in order to understand the discovery of the Higgs boson and what it all means.

The bridge with Chemistry is in the beginning with Dirac's theory on combining Quantum Theory with Einstein's Special relativity (also his work on non-relativistic Quantum Mechanics with Heisenberg's Uncertainty Principle makes a mention). The author thus says that if one wanted to study high energy particle collisions one needed to climb mountains - that would mean the presence of more such particles over the high mountains (and also the efforts).

When hosts of particles were being discovered during 1932-47, naming turned out to be a big task and Baggot comes out with the chronology of how they were named. 

Baggott first takes us through the history of the development of the Standard Model (which theory the Higgs boson is a part). He begins with the discovery that atoms are made up of the more elementary particles of electrons, protons and neutrons. And then takes us through the discovery of the still more fundamental particles of quarks, leptons and bosons, and the 4 fundamental forces that govern these particles: gravity, the electromagnetic force, the weak nuclear force, and the strong nuclear force. As with most authors of such Physics writings, there is the account of Weinberg-Salam theory with SU(2)xU(1) that always flies above my head.  But then there is good ending to it that enters the mind to satisfaction of the theory. 

There is a funnier part in between the chapters that made an interesting reading. The incident relates to the Physicist Veltman who entered an elevator in the last so that the weight exceeded the limit for the elevator to take off. Not relenting to this hang-on, he asked one of the persons inside to press the 'ON' button as soon as he would command that. Saying that he jumped into the air inside the Lift. Lo, the elevator worked out. If a person falls freely he will not feel his weight.

The Feynman quote that a proton-proton collision is like smashing two pocket watches together to see how are they put together also made an interesting insight.

While we know that the atom is 99% empty, the revelation that pulling a quark from interior of nucleon is done with the creation of anti-quark whose immediate pairing leads to a meson, makes a sensible answer to the vast emptiness we have been visualizing.  This is further explained with the fact that the mass of 2 up-quark is 4.5 - 9.9 MeV and the rest of the proton mass comes from the energy of Gluon fields inside the proton whose mass comes out to be 938 MeV!

For instance, and of crucial importance here, is that--after learning of the 3 types of elementary particles, and the 4 basic forces-- we learn that there was a problem with the then-current theory regarding the masses of the elementary particles- in that the 4 forces alone were simply unable to account for it. In order to overcome this difficulty, some physicists postulated that there must be a charged field pervading space, since such a field appeared to be the only appealing way to solve the mass mystery. This field was called the Higgs field.

A part of the book warranted fast reading as it was with the funding allocation and political deliberations.

A $15 billion project in the end it took 2 decades of untiring efforts by armies of physicists, engineers, construction workers etc. About 10000 tonnes of liquid Nitrogen and 150 tonnes of Liquid Helium ( A leakage of Helium alone caused a damage to about 53 magnets) was pumped into the LHC magnets that ran across 27 Km and was commissioned by August 2008, with the discovery of the Higgs particle by 2012 with more than 100 authors contributing to it! Used by Weinberg and Salam to account for electro-weak symmetry breaking this boson is having a spin 0 and a mass of about 125 GeV

This boson is so central to the state of physics today, so crucial to our final understanding of the structure of matter, yet so elusive, that he gave it a nickname: the God Particle. Good read above all.

#The_Singularity_is_Nearer: When we merge with AI - Ray_Kurzweil - #Review

    The book starts with “where we stand” in terms of epochs with the present one being a merger of bio-science with technology. The idea th...