What's new
Essays arrive in groups rather than one at a time, and a group usually opens up a subject not covered before. Between one group and the next nothing changes, so a reader who has seen the most recent group has seen everything.
16 September 2026
40 essays on waves, fluids, astrophysics, electromagnetism, mechanics, optics, quantum, thermodynamics and relativity
The ripple that counts the neighbours
An absorption edge is drawn as a step and it is a step with a ripple on it — a modulation of eleven per cent in copper, five in a zinc site buried in a protein. The ripple is the ejected electron's own wave, scattered back onto the atom that emitted it, so its period is a distance. It is the only way of measuring where an atom's neighbours are that does not need a crystal.
Below the gap, where there is nothing to absorb
A semiconductor is supposed to be transparent below its band gap, and it is not. The absorption falls exponentially instead, over seven decades, along a straight line whose slope is an energy of a few millielectronvolts — and the description that produces that line has no states in the gap at all. What the slope measures is how much the gap itself is moving about.
The drift a sound leaves behind
A sound wave moves fluid back and forth and puts it back where it started. Over many cycles it does not: a steady circulation appears, four cells to a wavelength, driven entirely from inside a boundary layer seventy micrometres thick. Its speed contains the sound speed and the amplitude, and it contains no viscosity at all — so making the fluid thinner does not make the drift weaker.
The oil that is a glass for a quarter of a millisecond
Every other account of viscosity here varies the temperature. Pressure does something larger and in the same direction for every liquid: viscosity rises exponentially, by a factor of ten to the eight or more at the gigapascal inside a loaded gear tooth. That is not a curiosity — it is the only reason there is a film there at all. Remove the pressure dependence from the calculation and the predicted film is five nanometres, under the roughness, and the surfaces touch.
Whether a fluid can be made arbitrarily thin
Viscosity has no units anybody would call fundamental, and nothing obviously stops it being as small as you like. Divide it by the entropy in a cubic metre and the units become Planck's constant over Boltzmann's — and a conjecture from 2005 says that ratio has a floor. Across fourteen decades of ordinary fluid nothing has been measured below it, the closest thing to it is the hottest matter ever made, and a kinetic-theory argument reaches the same number from the opposite direction.
A few cycles that are only mass and spin
After the orbit is gone there is one object left, distorted, and it settles down by radiating at frequencies that belong to it rather than to the collision. For a black hole those frequencies are fixed by the mass and the spin and by nothing else — so the first mode measured is a measurement and every mode after it is a test, and the test is that four curves in one plane pass through one point.
The ring that does not come back
Every picture of a passing gravitational wave shows a ring of free masses stretched, squeezed and let go. The last frame is wrong. The ring ends a different shape — permanently, with the masses at rest at new separations — by about a fifth of the largest distortion the wave itself produced. What sources the offset is the energy the wave carried away, so the wave is remembering itself, and nobody has measured it.
The field that points against the magnet it is in
There are two magnetic fields in use and the difference between them is which currents a loop is allowed to count. The consequence nobody expects on being told the definitions: inside a permanent magnet H points the other way from B. It has to — a loop inside the magnet threads no wire, so its H circulation is zero, and the only arrangement left has H running backwards.
A potential that does not come back to itself
Where no current flows, the magnetic field has no circulation round any small loop, so it is the gradient of something and a magnetic problem becomes an electrostatic one. The catch is not that the potential fails to exist. It is that walking once round a wire lowers it by the current, and walking round again lowers it by the current again — so Ampère's law survives the translation as a statement about what the path encircles rather than about where it went.
The floor that does no work
A jumper leaves the ground with three hundred joules of kinetic energy, supplied by a floor that does exactly zero work — because work is a force times the displacement of its own point of application, and the patch of floor under the foot never moves. Newton's second law integrated over the centre of mass gives the right kinetic energy and is not the work-energy theorem, and telling the two apart is what the first law of thermodynamics is for.
The wall that moves while the ball is in flight
Energy is conserved because the rules do not depend on the time. Move the walls of a box and the rules do depend on the time, so what is inside gains or loses without limit — and how much depends entirely on how fast. Moved slowly, a wall takes energy at exactly the rate the adiabatic law says; moved faster than the ball travels, it takes none at all, and the same box is a piston or a vacuum according to a speed.
The rings that belong to the edge
Every account of diffraction so far asks what the size of an aperture does. The rings around a star are not about its size: they are the transform of a discontinuity, they do not shrink relative to the core when the telescope grows, and the only way to remove them is to stop the transmission falling to zero abruptly. Softening the edge buys forty-five decibels of contrast and costs eighty per cent of the resolution.
How accurate a mirror has to be
The pupil's amplitude decides the rings; its phase decides the peak. A wavefront error of a fourteenth of a wave root-mean-square leaves eighty per cent of the peak intensity, which is the whole of what 'diffraction-limited' means — a convention laid over a computed number. And the number barely depends on what the error is, only on how large: four quite different aberrations of the same magnitude give nearly the same answer.
Two states where the counting says three
A particle of spin one has three states, and the photon has two. The missing one is not rare or weakly coupled — there is no such state of the electromagnetic field. What removes it is that a massless particle has no rest frame, so the rotations that would turn one projection into another are not available; and the state comes back the moment the particle acquires a mass, which is what a photon does in a plasma.
The experiment that defines spin and cannot be done on it
A Stern–Gerlach magnet separates magnetic moments and is how spin was discovered. It cannot be made to work on a free electron, and the obstruction is not the apparatus: the field gradient that splits the beam also deflects the charge by an amount that varies across it, and the ratio of the splitting to that blurring comes out as the de Broglie wavelength over the beam width — with the magnet's length and gradient cancelling exactly.
A fridge with no work going into it
Every engine here so far turns heat into work or work into a heat flow. A machine exchanging heat with three reservoirs and doing no work at all can still move heat from cold to hot, and the ceiling on how much is the product of two Carnot expressions — an engine's efficiency times a fridge's coefficient of performance. A gas flame makes ice, and the accounting is one inequality in three entropy flows.
An engine with one number in it
A thermoelectric couple has no moving part and no working fluid, and its efficiency is the Carnot value multiplied by a factor containing exactly one dimensionless group of material properties. Sixty years of effort have moved that group from about one to about two, and the reason it is hard is that its three ingredients are not independent: raising the conductivity ruins the coefficient it is squared against, and the only lever that is really free is the heat the lattice carries.
The body that has no temperature when it moves
Energy, momentum, length, duration and field strength all change when the observer moves. Temperature was argued about for sixty years, with three transformation laws proposed and each defended by people making no mistake. The resolution is that a moving blackbody is a perfect blackbody in every direction at a different temperature in each — so a thermometer's reading depends on where it is put, and the quantity the law was for is not there.
The count that no observer can disagree about
A moving body, it turns out, has no temperature. What it does have is an entropy, and every observer agrees about it — because entropy is the logarithm of a count of arrangements, and a count is a number. That one invariant, with energy and momentum being parts of one object, is enough to compute everything a temperature could not: what happens to the energy density, the entropy density, and the relation between them that having a temperature consists of.
The bath that pushes back
Moving through a bath of radiation is not free. The light arriving from ahead is blue-shifted and more intense and the light from behind is weaker, so a body absorbs more momentum from the front than from the back and slows down. That drag picks out the frame in which the radiation is isotropic — without violating relativity, because the laws are the same in every frame and the radiation is not.
The action that knows where every path ends
The action is usually a number attached to one path. Treat it instead as a function of where the true path ends, and a single function of position and time holds every trajectory at once — its slope is the momentum, its rate of change is the energy, and its level curves are wavefronts, drawn about a point that sits above the source while everything falls.
The throw most likely to go in
A free throw can be launched at 51.4° with less speed than at any other angle, and there a small error of angle hardly moves the ball at all. It is still not the best aim. Once the question is which throw most often goes in rather than which is cheapest, the thrower's scatter has to be laid over the launches that succeed — and for a hoop the answer moves steeper, while for a board the same scatter moves it flatter.
The orbit that ages less than a throw
A clock in orbit and a clock thrown straight up leave the same point at the same moment and meet there again one period later. Both fall freely the whole way, so both follow paths of stationary proper time — and the thrown clock comes back 4.1 microseconds older. Even a clock held still by a rocket, which is not falling at all, beats the orbit. Free fall picks out a path that is stationary, not one that is longest.
The column that is hotter at the bottom
Two bodies in equilibrium have the same temperature — that is what equilibrium was supposed to mean. In a gravitational field it is false. A column left alone until nothing in it changes is warmer at the bottom by exactly the factor by which clocks there run slow, a part in ten million billion per metre on the Earth and more than a per cent across the outer kilometre of a neutron star, and near a black hole's horizon the equilibrium temperature grows without limit.
The reaction that cannot go all the way
Chemistry speaks of reactions that go to completion and reactions that do not happen, and at equilibrium there are neither. The reason is a logarithm. The free energy of a half-finished reaction contains the entropy of mixing, whose slope is infinite at both pure ends, so every reaction's lowest point lies strictly inside — and the slope of that free energy, the chemical potential, is to particles what temperature is to heat.
The glow that carries a voltage
Thermal radiation has no chemical potential, because walls make and destroy photons freely. A light-emitting diode is a body that glows at room temperature with a voltage written into its light — Planck's law with the voltage as the photons' chemical potential — which is why its light can be as bright as a surface thousands of kelvin hot, why at low voltage it can put out more light than the power it draws and cool itself doing so, and why a reverse voltage makes a surface look colder than it is.
The outcomes identical photons refuse
Two identical photons meeting at a beam splitter always leave together, and that one fact carries three more. No classical light can empty the coincidence dip more than halfway, so the depth is a test of what light is; the depth measures how identical two photons are, however they differ; and with three photons in a three-way splitter whole classes of outcome become impossible — the first case of a sum over paths that no known algorithm can evaluate quickly as the photons multiply.
The noise pushed below the floor
A perfectly steady laser beam still flickers, by an amount set by the vacuum itself, and for most of the twentieth century that flicker was treated as the floor of any optical measurement. It is a floor only for one shape of noise. Light can be made quieter than the vacuum in one property by being made louder in another — and the price, the fragility and the use of that trade are all visible in how the noise is shaped, which is why the world's gravitational-wave detectors now run on it.
The fall that leaves the mass in the phase
Every body falls the same way whatever its mass, and a neutron is no exception. But a neutron is also a wave, and the phase that wave accumulates while falling depends on the mass — as its square, at a fixed wavelength. Tilt a neutron interferometer so that one path runs a centimetre higher than the other and the neutrons swing between its two detectors, which in 1975 was the first measurement in which gravity and quantum mechanics both had to be right at once.
The field outside that cannot find the core
Gauss's law gives the field outside a body from what it encloses, and read backwards it is a limit. A uniform ball, a planet with an iron core and a hollow shell of the same mass have identical gravity everywhere outside. The field fixes a list of numbers — the mass, the flattening, higher moments — and leaves free everything else, including the moment of inertia; the Earth's core was weighed by its wobble, not by its pull.
The solitons a hump already contains
A soliton is one height for one width. Release a hump of any other shape and it does not keep that shape or simply spread — it comes apart into a fixed number of solitons of fixed heights, running off in order of size, with a ripple left behind. The number and the heights can be read off before anything moves, by treating the hump upside down as a well and counting the levels it holds.
The coupler that does not care about the colour
Two identical guides side by side swap their light back and forth, and a coupler cut to the length of one swap works perfectly at one wavelength and badly at every other. Make the guides unequal, and sweep the inequality from one sign to the other along their length, and the light no longer swaps — it follows a single mode of the pair as that mode moves from one guide to the other. The transfer is then nearly complete across hundreds of nanometres of wavelength and immune to the widths being made wrong, and it costs length.
The crystal made of moments
A stack of layers that repeats in space refuses a band of frequencies and reflects them. A medium that repeats in time — its refractive index swung up and down everywhere at once — refuses a band of wavenumbers instead, and a wave with a wavenumber in that band does not reflect. It grows, exponentially, drawing on whatever is swinging the index. The construction is exact, the gap is computable from one period of the modulation, and the obstacle to building one for light is how fast a material would have to change.
The walk that interference can stop
Light scattered many times walks through a cloud, and a walk always gets through eventually — a slab twice as thick lets through half as much. Keep the waves' interference instead of adding intensities, and in one dimension the same disorder does something a walk cannot: it stops the light exponentially, traps it in modes with nothing special about where they sit, and turns transmission from a number into a spread over powers of ten. Whether the same can happen to light in three dimensions has been claimed, retracted and argued for thirty years.
The wave that holds a ship back
In 1893 the polar ship Fram, which could make four or five knots, was held to about one in a calm Arctic sea with nothing visible in the water. The sea was layered — a metre or two of fresh meltwater over salt — and the ship was making a wave on the boundary between the layers, a wave that travels at about a knot and carries away almost all of a slow ship's power. Below that speed the drag is a hump no steady thrust can climb; above it the wave cannot keep up and the drag falls away.
The twist that outlives the turbulence
A plasma pinch driven hard enough goes violently unstable, and then settles into the same quiet state however it was started — with the field at its edge pointing backwards. The explanation is that turbulence destroys almost every constraint a perfect conductor obeys and spares one. The magnetic helicity, a measure of how twisted and linked the field is, decays far more slowly than the energy, and a field that has shed all the energy it can at fixed helicity has only one shape available to it.
The clocks that must all slow together
Every clock on the Earth runs slower in January than in July, by three parts in ten thousand million, because the orbit carries the planet deeper into the Sun's potential at perihelion. No clock on the Earth can see this, and that invisibility is the claim worth testing. If the redshift is a property of time rather than of clocks, two clocks built on different physics must slow by exactly the same fraction, and their ratio must not move with the seasons. A ratio that did move would mean the constants of nature depend on where they are measured.
The like charges that pull together
Two surfaces carrying the same charge, with nothing between them but the ions that neutralise them, ought to repel, and the standard mean-field theory proves that they always do. With calcium or spermine as the counterions they attract, and come to rest a fraction of a nanometre apart. The mean field misses it because it averages the ions into a smooth cloud, and multivalent ions are too strongly repelled by each other to form one. Each keeps a patch of surface to itself, and the pressure between the plates becomes a single ion's business.
The current no particle carries
A magnetised plasma holds its own pressure against the field only if a current flows across the pressure gradient, and the fluid equations say exactly how much. Follow the particles in a uniform field and none of them is going anywhere; every guiding centre is still. The current is real all the same. It is made of circles that are more crowded on one side of a line than the other, and when the field is not uniform, the drifts that do move the guiding centres flow the wrong way.
The circuit that forgets its charge
A tiny superconducting island joined to its surroundings through a Josephson junction has discrete energy levels, and two of them make a quantum bit. The first such circuits were ruined by stray charges on nearby surfaces, which moved their levels and scrambled any superposition within a nanosecond. The cure was to make the junction's energy fifty times the charging energy. That makes the levels exponentially insensitive to charge while costing only a power-law loss in the unequal spacing that lets one transition be driven alone.
Before that
Everything published earlier, newest first. Titles only — the cards are on the full listing.
14 September 2026
20 essays on electromagnetism, mechanics, optics, thermodynamics, astrophysics, quantum, waves, fluids and relativity
- What holds a magnet together is not magnetism — electromagnetism
- The first length that belongs to the substance — electromagnetism
- Nothing keeps a magnetisation for ever — electromagnetism
- The load nobody applied — mechanics
- A state no load could reach — mechanics
- The one number the tolerances cannot touch — mechanics
- The invariant that is a count — optics
- The work a diluted beam will not do — optics
- The same cone, and a different arrival — optics
- The condition three modes never meet — thermodynamics
- Half a kT in a piece of wire — thermodynamics
- Weighing what cannot be put on a scale — thermodynamics
- The estimate that misses by a hundred and twenty — astrophysics
- The scale that may not be where it looks — astrophysics
- A link between two that never met — quantum
- The corner of Hilbert space that is ever visited — quantum
- The one medium that was supposed to add exactly — waves
- Two tails that swap everything — waves
- The body that displaces two things — fluids
- How big now is — relativity
13 September 2026
19 essays on astrophysics, electromagnetism, fluids, mechanics, optics, relativity, quantum, thermodynamics and waves
- The bill that arrives when the pushing stops — astrophysics
- The binding energy that has to fall too — astrophysics
- The bias no battery supplies — astrophysics
- The potential is where the wanderers stop — electromagnetism
- The stretch a chain cannot outrun — fluids
- The counterions that never leave the chain — fluids
- The latitude past which a tide cannot split — fluids
- The calm that is the ghost of a cycle — mechanics
- The cloud light has to walk through — optics
- The reflection that needs no surface — optics
- The slope a spin leaves in a spectrum — relativity
- The plane in which three bodies are flat — relativity
- The rocket that leaves its fuel at home — relativity
- The field an atom calls strong — quantum
- The fastest a state can stop being itself — quantum
- The gas that flows towards more of itself — thermodynamics
- The resonance that refuses to leak — waves
- The mismatch no network can remove — waves
- The fan of plane waves inside every beam — waves
11 September 2026
20 essays on astrophysics, mechanics, fluids, optics, electromagnetism, quantum, relativity, thermodynamics and waves
- The friction made of light — astrophysics
- The limit that belonged to a simpler atom — astrophysics
- One curve answers every slope — mechanics
- The best throw is a tangency — mechanics
- The pore that fills from dry air — fluids
- The angle a voltage can set — fluids
- The cone light has to find to get out — optics
- The delay that is a random variable — optics
- The pull that grows on the way down — electromagnetism
- The voltage that is a frequency — electromagnetism
- The return a classical cloud never makes — quantum
- The probability that goes below zero — quantum
- The speed at which grip hands over to power — mechanics
- What the light cones alone can decide — relativity
- The five places infinity turns out to be — relativity
- The temperature an engine really takes its heat at — thermodynamics
- The work left in two buckets of water — thermodynamics
- The end that knows how the middle was cut — waves
- The mirror that works from every direction — waves
- The count that decides which entropy is right — thermodynamics
9 September 2026
20 essays on astrophysics, electromagnetism, fluids, mechanics, optics, quantum, relativity, thermodynamics and waves
- The same force whichever way the surface faces — astrophysics
- The wave that does not know what the gas is made of — astrophysics
- The distance where a field changes its mind — electromagnetism
- When the source is not heard all at once — electromagnetism
- The solution that is thrown away — electromagnetism
- The wave that is required to stand still — fluids
- The reflection that changes the wavelength — fluids
- The deflection that closes on itself — mechanics
- The ratio that decides whether the planet is turning — mechanics
- The angle that is two angles — optics
- The ray on the wrong side of the normal — optics
- The energy that did not all arrive — quantum
- The chain that runs at its slowest member's rate — quantum
- The half-life that chemistry can change — quantum
- Charge and current are one thing — relativity
- Six numbers, one object — relativity
- The entropy that depends on how fast it was cooled — thermodynamics
- A law about spectra, not about heat — thermodynamics
- Where the loudness goes — waves
- The steps in an absorption curve — waves
8 September 2026
20 essays on quantum, waves, electromagnetism, mechanics, optics, thermodynamics, astrophysics, relativity and fluids
- The turn that has to be made twice — quantum
- The dent that raises the note — waves
- The force read off a surface that touches nothing — electromagnetism
- The drift that does not care what the charge is — electromagnetism
- The grip that needs a little slipping — mechanics
- The axis a leak of energy chooses — mechanics
- The flat scene that comes back curved — optics
- The pattern the sky is written in — optics
- The engine a fluctuation cannot run — thermodynamics
- The energy that refuses to be shared — thermodynamics
- The height a planet is seen from — thermodynamics
- The area that is not allowed to shrink — astrophysics
- The clock that measures a height — astrophysics
- The fall that does not depend on what is falling — astrophysics
- The drag that was only an addition — relativity
- The cone a decay cannot leave — relativity
- The transformation that never mentions light — relativity
- The swelling a membrane cannot stop — fluids
- The film that goes black before it bursts — fluids
- The pile that is never finished settling — fluids
5 September 2026
50 essays on mechanics, electromagnetism, optics, waves, thermodynamics, quantum, relativity, fluids and astrophysics
- The top that nods before it settles — mechanics
- Five balls, and the law that does not choose — mechanics
- The part of the wrap that is actually gripping — mechanics
- The principle that fixes the energy instead of the clock — mechanics
- The map a dripping tap turns out to be — mechanics
- The oscillator that answers at three times the question — mechanics
- The circuit that fights its own change — electromagnetism
- The resistance that is a length — electromagnetism
- The curve that is really a staircase — electromagnetism
- The symmetry one missing charge would complete — electromagnetism
- Two lengths, and which one is longer — electromagnetism
- The momentum of something that is not moving — electromagnetism
- The cone a fibre will accept — optics
- The focus that is a slab, not a plane — optics
- The light with no direction of shaking — optics
- Everything a scatterer removes, from one direction — optics
- The surface that images one point exactly — optics
- The fringe and the spectrum are one measurement — optics
- What adding does to the energy — waves
- The resonance with a zero in it — waves
- The backward wave Huygens had to remove — waves
- The frequency a lattice cannot carry — waves
- The node that is not standing still — waves
- The mode that will not turn a corner — waves
- The temperature a molecule does not have — thermodynamics
- The melting curve that leans the wrong way — thermodynamics
- The gradient that drives the other thing — thermodynamics
- The second law, with a probability attached — thermodynamics
- The first correction to the gas law — thermodynamics
- The questions that can be asked together — quantum
- The phase a magnet leaves on a path it never touched — quantum
- The state that swings like a pendulum — quantum
- How long the crossing takes — quantum
- What two have they cannot give a third — quantum
- Why an atom is the size it is — quantum
- The diagram a ruler cannot read — relativity
- The centre that is not a place — relativity
- The one quantity a boost leaves alone — relativity
- The space that speeds live in — relativity
- The longest way round is the shortest clock — relativity
- The shear that only reaches so far — fluids
- The push that has no direction — fluids
- The hourglass that keeps time — fluids
- The membrane that almost holds — fluids
- The corner a liquid never stops climbing — fluids
- The arrow that says which way the orbit points — astrophysics
- What the instrument actually hears — astrophysics
- The hole that outlives everything and then does not — astrophysics
- Whether a charge on a table glows — astrophysics
- The length no experiment can resolve — astrophysics
3 September 2026
20 essays on mechanics, waves, optics, electromagnetism, thermodynamics, quantum, relativity, fluids and astrophysics
- The force a coordinate cannot see — mechanics
- Everywhere a throw can reach — mechanics
- The count that cannot be cheated — waves
- The shift a mirror gives twice — waves
- Swap the ends and nothing changes — waves
- The law that only asks about one component — optics
- The correlation that survives what the phase does not — optics
- The force that lives where the model is not — electromagnetism
- The pressure a charge puts on its own metal — electromagnetism
- The summer that reaches the cellar in December — thermodynamics
- Why the triple point is a point — thermodynamics
- The average that obeys Newton — quantum
- Two walls that let more through than one — quantum
- One level, and the field that bends the bands — quantum
- Everything from an exchange of pulses — relativity
- The clock that does not feel the turn — relativity
- The heat that arrives as a wave — fluids
- The big one comes to the top — fluids
- The wall a plasma builds against itself — astrophysics
- The light that pulls rather than pushes — astrophysics
1 September 2026
20 essays on mechanics, waves, fluids, astrophysics, optics, quantum, electromagnetism, thermodynamics and relativity
- The fold that has to be there — mechanics
- The curve that does not ask where it started — mechanics
- The wave that comes from the rim — waves
- The wave a surface is enough to hold — waves
- The angles a film has no choice about — fluids
- The liquid that climbs the rod — fluids
- The circle light cannot leave — astrophysics
- The wave that dies with nothing to rub against — astrophysics
- The lens that is a set of rings — optics
- The retarder with no crystal in it — optics
- The last atom does all the seeing — quantum
- The state that cannot be copied — quantum
- The two in the flux quantum — electromagnetism
- The two equations that are not laws of motion — electromagnetism
- The gas that nobody counted — thermodynamics
- The second experiment that cannot disagree — thermodynamics
- The transition with nothing to order — thermodynamics
- The motion that measures faster than light — relativity
- The brightness that is not the same for everyone — relativity
- The disc that cannot be spun — relativity
30 August 2026
20 essays on mechanics, waves, fluids, astrophysics, optics, quantum, electromagnetism, thermodynamics and relativity
- The conservation law a symmetry hands over — mechanics
- The table statics cannot settle — mechanics
- The front that steepens until it cannot — waves
- The pulse two failures keep alive — waves
- The thickness that goes both ways — fluids
- The heap that becomes a solid — fluids
- The distance that forgets the moon — astrophysics
- The light that takes a hundred thousand years to leave — astrophysics
- The ring at twenty-two degrees — optics
- The grain that is in the light — optics
- The experiment a wave cannot pass — quantum
- The crossing that never happens — quantum
- The force with no force in it — quantum
- A refraction with no wave in it — electromagnetism
- The coupling that is the same both ways — electromagnetism
- The field that is pushed out — electromagnetism
- Hotter than any temperature there is — thermodynamics
- The gas that cools by being let go — thermodynamics
- Nothing is allowed to be rigid — relativity
- The fuel a starship needs — relativity
29 August 2026
20 essays on waves, mechanics, fluids, astrophysics, optics, thermodynamics, relativity, electromagnetism and quantum
- The answer that cannot come first — waves
- The arrival that keeps arriving — waves
- How many ways there are to vibrate — waves
- The angle that drag moves — mechanics
- Held up by a force that averages to nothing — mechanics
- Least action, except that it is not least — mechanics
- The angle that does not know the size of the heap — fluids
- What it costs to take the salt out — fluids
- The fountain a lamp can drive — fluids
- The disturbance that grows instead of travelling — astrophysics
- The long-range force that does not reach — astrophysics
- The brightness a mass cannot exceed — astrophysics
- The fringes below the rainbow — optics
- The phase that is only a shape — optics
- The gas that leaves is not the gas inside — thermodynamics
- The barrier a new phase has to climb — thermodynamics
- The temperature of an acceleration — relativity
- The speed that cannot be measured one way — relativity
- Nothing can be held still by a static field — electromagnetism
- Where the interference goes — quantum
28 August 2026
20 essays on mechanics, waves, thermodynamics, fluids, optics, electromagnetism, relativity, astrophysics and quantum
- The last curve to go — mechanics
- The pile that lands heavier than it weighs — mechanics
- The width that is a lifetime — waves
- The taper that matches every note — waves
- The walk that comes home — thermodynamics
- The entropy that is still there at zero — thermodynamics
- The paste that holds up its own hill — fluids
- The wave that picks an angle — fluids
- The condition a lens must meet — optics
- The fringe that measures a star — optics
- The wavelength a fibre does not smear — optics
- The potentials that are not unique — electromagnetism
- How far a field gets into metal — electromagnetism
- The law that is always true and rarely useful — electromagnetism
- The ship that never arrives at c — relativity
- The two clocks that flew in opposite directions — relativity
- The mass no cold matter can hold up — astrophysics
- The whistle that arrives sorted — astrophysics
- The order the shells fill — quantum
- Four states, and one of them is odd — quantum
26 August 2026
15 essays on quantum, electromagnetism, optics, thermodynamics, astrophysics, waves, mechanics, fluids and relativity
- The mass a curve decides — quantum
- The exponential that is only true in the middle — quantum
- The field outside the solenoid, which is not zero — electromagnetism
- Why a litre of water is not blue for the reason the sky is — optics
- The staircase that never reaches the floor — thermodynamics
- The force a charge exerts on itself — astrophysics
- The frequency below which nothing gets in — astrophysics
- The distance that takes the treble out — waves
- The cone the source leaves behind — waves
- The grip that is not a coefficient — mechanics
- The error that doubles on a schedule — mechanics
- The column that is pulled, not pushed — fluids
- The layer a parcel cannot leave — fluids
- The ring where the two beams disagree — relativity
- The wall of silence behind a rocket that never stops — relativity
25 August 2026
15 essays on electromagnetism, quantum, thermodynamics, fluids, relativity, astrophysics, optics, mechanics and waves
- The magnetism classical physics forbids — electromagnetism
- The constant that depends on how fast it is asked — electromagnetism
- The disagreement that one run settles — quantum
- The line that is really two — quantum
- The share that is not half a kT — thermodynamics
- The glow that says nothing about the surface — thermodynamics
- The whirlpool that comes in one size — fluids
- The collision that wastes most of the energy — relativity
- The box of light that weighs something — relativity
- The parallelogram that will not close — astrophysics
- The knot the field cannot untie — astrophysics
- The image that is a diffraction pattern twice — optics
- The grating that photographs itself — optics
- The push that needs nothing to push against — mechanics
- The mode that lives in the mistake — waves
24 August 2026
15 essays on fluids, mechanics, waves, optics, quantum, electromagnetism, thermodynamics, relativity and astrophysics
- The silo that does not weigh what it holds — fluids
- The pressure that comes from counting — fluids
- The length nobody has to measure — mechanics
- The gap a repeat opens — waves
- The channel with no walls — waves
- The brightness no lens can increase — optics
- The rotation a return trip doubles — optics
- The angular momentum that is not a rotation — quantum
- The measurement that never touched it — quantum
- The field that points where the charge is now — electromagnetism
- The angular momentum that is in nothing at all — electromagnetism
- The bit that has to be paid for — thermodynamics
- The engine that has to finish — thermodynamics
- The string that breaks between two rockets — relativity
- The lens with no focal length — astrophysics
22 August 2026
15 essays on mechanics, waves, optics, quantum, electromagnetism, thermodynamics, relativity, fluids and astrophysics
- The chatter a stiffer holder removes — mechanics
- The energy that depends on the observer — mechanics
- The pipe that will not carry a low note — waves
- The path that takes the longest time — optics
- A wall that a factor of two makes impassable — quantum
- The field the matter takes away — electromagnetism
- The magnet that has to fight its own field — electromagnetism
- Why heating a perfect spring changes nothing — thermodynamics
- The point at which the two become one — thermodynamics
- The push that does not point where the body goes — relativity
- The field nobody can transform away — relativity
- The block the water does not lift — fluids
- The liquid that remembers — fluids
- The orbit that has to shrink — astrophysics
- The ball of gas that heats up as it cools — astrophysics
21 August 2026
15 essays on mechanics, waves, optics, electromagnetism, thermodynamics, quantum, relativity, fluids and astrophysics
- The quantity that survives a change of shape — mechanics
- The push that comes out sideways — mechanics
- The spiral that says how much light arrives — waves
- The mass that makes another stand still — waves
- The crystal that answers twice — optics
- The reflection that happens where the glass is not — optics
- The rule that is two laws wearing one coat — electromagnetism
- The viscosity that does not care how much gas there is — thermodynamics
- The pressure that is not a temperature — quantum
- The contraction no photograph shows — relativity
- The turn that two pushes leave behind — relativity
- The ring the drop leaves behind — fluids
- The height a siphon cannot pass — fluids
- The delay that is not a bend — astrophysics
- The size the light cannot blow away — astrophysics
20 August 2026
15 essays on mechanics, electromagnetism, optics, waves, thermodynamics, quantum, relativity, fluids and astrophysics
- The three ways of coming to rest — mechanics
- The magnet that falls slowly — electromagnetism
- Two glasses that cancel a derivative — optics
- When the particle is the size of the wave — optics
- The layer that makes a reflection vanish — waves
- The speed that carries no signal — waves
- Mixing what is already mixed — thermodynamics
- The part of the curve no fluid follows — thermodynamics
- The motion that cannot be stopped — quantum
- The mass that is missing — relativity
- Which came first, and who decides — relativity
- The depth past which it must sink — fluids
- The surface that pulls toward the stronger side — fluids
- The horizon that nothing marks — astrophysics
- The orbit that does not come back to itself — astrophysics
19 August 2026
15 essays on mechanics, electromagnetism, optics, waves, relativity, thermodynamics, fluids and astrophysics
- The axis that will not hold — mechanics
- Slide or topple — mechanics
- The charge that has to be somewhere else — electromagnetism
- The loop that behaves like a needle — electromagnetism
- The angle at which reflection picks a side — optics
- The ray that bends without a surface — optics
- How far a wave can remember — optics
- The swing that is pumped, not pushed — waves
- The correction that took a century — waves
- The packet that will not keep its shape — waves
- The sky that crowds into a cone — relativity
- The clock that is wrong in two directions — relativity
- The engine that pays back more than it takes — thermodynamics
- The surface a spin decides — fluids
- The term free fall cannot remove — astrophysics
17 August 2026
15 essays on mechanics, electromagnetism, optics, waves, relativity, thermodynamics, fluids, astrophysics and quantum
- The point that keeps moving as if nothing had happened — mechanics
- The two pendulums that will not stop swapping — mechanics
- Where the energy of a field actually is — electromagnetism
- The attraction that needs no charge — electromagnetism
- What a thousand slits buy that two cannot — optics
- Why two lamps never interfere — optics
- The equation that lets a shape travel — waves
- The drum that has no harmonics — waves
- The invariant that survives a boost — relativity
- The pole that fits and does not fit — relativity
- What a system actually minimises — thermodynamics
- A boiling point is a pressure, not a temperature — thermodynamics
- The angle a liquid makes with what it sits on — fluids
- The orbit that cannot be made smaller — astrophysics
- The correlation no instructions can produce — quantum
15 August 2026
15 essays on mechanics, electromagnetism, optics, waves, thermodynamics and relativity
- The force that takes what it needs — mechanics
- Every minimum is a parabola — mechanics
- The forces that are not there — mechanics
- The force that does no work — electromagnetism
- The field that wraps a current — electromagnetism
- The term that made light — electromagnetism
- The path that does not change — optics
- How far apart two things have to be — optics
- Every front is a source — waves
- What happens where the medium changes — waves
- How a wave thins out — waves
- Half a kT for every way of moving — thermodynamics
- The exponential that decides everything — thermodynamics
- The quantity nobody argues about — relativity
- Magnetism is electricity seen sideways — relativity
14 August 2026
15 essays on astrophysics, relativity and thermodynamics
- The floor that cannot be told from gravity — astrophysics
- The clock that runs slow lower down — astrophysics
- The bend Newton got half right — astrophysics
- The surface that only lets things in — astrophysics
- Two clocks that disagree about the fall — astrophysics
- The wave that stretches one way and squeezes the other — astrophysics
- Light has a pressure — astrophysics
- A charge that turns must glow — astrophysics
- How far a neutrino gets — astrophysics
- The field that cannot get out — astrophysics
- The size at which a body becomes round — astrophysics
- Where every model runs out at once — astrophysics
- The twin who comes back younger — relativity
- The shift that survives at right angles — relativity
- The entropy that lives on a surface — thermodynamics
13 August 2026
15 essays on fluids, thermodynamics and quantum
- The pressure that only knows depth — fluids
- Force multiplied, and nothing gained — fluids
- The weight of the water that is not there — fluids
- Why a ship comes back upright — fluids
- The skin that is not a skin — fluids
- The small bubble blows up the big one — fluids
- The thread that cannot stay a thread — fluids
- How high water will climb — fluids
- Momentum going sideways — fluids
- The fourth power in a pipe — fluids
- The fluid that answers back — fluids
- The speed that depends on the length — fluids
- How far a molecule gets — thermodynamics
- The jiggle that proved atoms — thermodynamics
- The liquid that will not slow down — quantum
11 August 2026
15 essays on quantum
- The curve that would not come down — quantum
- Light arrives in lumps, and brightness only changes how many — quantum
- A photon with a momentum, and a collision that proves it — quantum
- Everything has a wavelength, and almost nothing shows it — quantum
- The box that allows only some energies — quantum
- The spectrum is a subtraction, not a list of values — quantum
- Where the electron probably is — quantum
- Sharpness has to be paid for — quantum
- The wall that is not quite a wall — quantum
- One arrival at a time, and the pattern still appears — quantum
- The answer that was not there before — quantum
- No two in the same state, and why matter has volume — quantum
- What happens when the wells get close — quantum
- A nucleus with no clock — quantum
- Where the quantum picture hands back the old one — quantum
10 August 2026
12 essays on mechanics, electromagnetism, optics, waves, thermodynamics and relativity
- The same push, further out, and why that is a different quantity — mechanics
- The mass, and where it sits, which is what decides the race — mechanics
- The field that makes the other, and only while it is changing — electromagnetism
- How much charge a shape will hold, before anything is charged — electromagnetism
- The direction of the shaking, and the filter that only asks about it — optics
- Why the sky is blue and the sunset is not, from one exponent — optics
- The medium decides the speed, and the source only decides the note — waves
- The packet that moves at another speed than its own crests — waves
- The heat that changes no temperature, and where it actually goes — thermodynamics
- Why the air thins with height, and why that is the same law as the speeds — thermodynamics
- Mass is a form of energy, which is not the same as a source of it — relativity
- Speeds that refuse to add, and the quantity that does — relativity
3–7 August 2026
34 essays on mechanics, waves, optics, electromagnetism, thermodynamics and relativity
- The pendulum, and the small lie that makes it simple — mechanics
- The angle that throws furthest, and why nobody notices — mechanics
- The slope, and the two directions that make it easy — mechanics
- Collisions are easier than forces, and momentum is the reason — mechanics
- A wave is a shape that travels, and nothing else does — waves
- When two waves meet, they simply add — waves
- Only some notes fit, and that is where discreteness comes from — waves
- The bend at the boundary, and what it is really about — optics
- What a lens is doing, and why three rays are enough — optics
- The angle past which light cannot leave — optics
- Field lines are a choice, not a discovery — electromagnetism
- The field before the lines were drawn on it — electromagnetism
- Counting what comes out, and never looking inside — electromagnetism
- The speeds in a still room — thermodynamics
- Entropy is a count, and the arrow of time is arithmetic — thermodynamics
- The ceiling on every engine, set before it was designed — thermodynamics
- Two axes, one speed, and a diagram that does the arguing — relativity
- The clock that has to slow, and why no clock can refuse — relativity
- Now is a choice of slicing — relativity
- The hill that gives it back, and the forces that do not — mechanics
- Turning is an acceleration, and constant speed does not help — mechanics
- The period that depends on the swing, computed exactly — mechanics
- The note that changes on approach, and the two ways of getting it — waves
- The frequency that gets an answer, and the quarter cycle nobody mentions — waves
- The angle the rainbow has to be, and why nobody chose it — optics
- Where rays stop being enough, and a shadow acquires a bright centre — optics
- The mirror that cannot focus, and the shape that can — optics
- One number for every point, and nothing at all is lost — electromagnetism
- The field with no ends, and the force that does no work — electromagnetism
- The shape decides the falloff, and the force law never changes — electromagnetism
- The inside of a conductor, where the field is exactly nothing — electromagnetism
- Pressure is a rate of arrival, and the gas law falls out of counting — thermodynamics
- The equation that only runs forwards, and the walk underneath it — thermodynamics
- The length that depends on when, and is not really about length — relativity