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This post is a follow on from Powering the Mars Base. It’s an extended riff on the following thought experiment: What is the most electrical power you could extract from an integrated Starship-delivered nuclear reactor on Mars? The usual caveats apply. I have taught nuclear physics but I am not a reactor designer – which will shortly become obvious to those of you who Know. No liability is accepted for attempts to install open Brayton cycle nuclear turbines in Starships, with or without SpaceX permission. At the outset, let’s rehearse the underlying assumptions. A Starship has a 9 m diameter, …
6 months ago

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More from Casey Handmer's blog

Why am I searched every time I go to Australia?

The Australian Border Force won’t stop searching me and my personal devices when I visit Australia. Despite being an Australian citizen, under Australian law, I have zero recourse to this continued flagrant invasion of my privacy. After two years of harassment I am publicizing this as a considered next step in an effort to make it stop.  This is somewhat different from my usual articles about space, energy, and technology – we will return to that theme shortly. As far as possible, I will relate only facts and keep editorializing to a minimum. I will update this post as the …

4 months ago 25 votes
To Conquer the Primary Energy Consumption Layer of Our Entire Civilization

[Originally posted on the Terraform blog April 3, 2025.] Three years ago we set out to make cheap synthetic natural gas from sunlight and air. At the time I didn’t fully appreciate that we had kicked off the process of recompiling the foundation layer of our entire industrial stack.  Last year, we made cheap pipeline grade natural gas from sunlight and air and expanded our hydrocarbon fuel road map to include methanol, a versatile liquid fuel and chemical precursor for practically every other kind of oil-derived chemical on the market. Unlimited synthetic methane and methanol underpinning global energy supply is a good start, but …

4 months ago 62 votes
Long duration propellant stability in Starship

Some ideas on preventing cryogenic propellant boiloff in Starship during long duration cruise or while operating orbital fuel depots. The usual caveats apply! One of the major concerns with using Starship for the Human Landing System is that propellant (cryogenically liquid methane and oxygen) need to a) be transferred in orbit and b) maintained for the duration of the mission, which could be weeks, months, or years. In particular, no astronaut wants to board their Starship after a successful 6 week sortie on the Moon only to find the fuel’s boiled off and they’re stuck.  The trick lies in using energy …

5 months ago 56 votes
California’s path to redemption

California is by far the richest and most powerful polity led by Progressive ideals, and it has taken a beating of late. In this post, I discuss a practical roadmap by which California must reclaim its mantle as the shining city on the hill, an embodiment of the positive attributes of Progressive ideals and material optimism, and once again become a target of aspirational upward mobility. This will not be an easy road. Decades of complacency have squandered enviable resources and potential. But I believe a strength of America is syncretism, with the marketplace of ideas providing robust competition for …

6 months ago 49 votes
What can we send to Mars on the first Starships?

As of today, it is 601 days until October 17, 2026, when the mass-optimal launch window to Mars opens next.  While I don’t have any privileged information, it’s fun to speculate about what SpaceX could choose to send on its first Starship flights to Mars. (Spoiler alert: Rods from the gods…) Over the next 600 days, SpaceX has a number of key technologies to demonstrate; orbit, reuse, refill, and chill. It’s hard to make predictions, particularly about the future. I’m optimistic that SpaceX will have multiple fully fueled Starships ready to go in October next year, to be followed by …

6 months ago 68 votes

More in science

The Karaoke Machine’s Surprising Origin

Belting your favorite song over prerecorded music into a microphone in front of friends and strangers at karaoke is a popular way for people around the world to destress after work or celebrate a friend’s birthday. The idea for the karaoke machine didn’t come from a singer or a large entertainment company but from Nichiden Kogyo, a small electronics assembly company in Tokyo. The company’s founder, Shigeichi Negishi, was singing to himself at work one day in 1967 when an employee jokingly told him he was out of tune. Figuring that singing along to music would help him stay on pitch, Negishi began thinking about how to make that possible. He had the idea to turn one of the 8-track tape decks his company manufactured into what is now known as the karaoke machine. Later that year, he built what would become the first such machine, which he called the Music Box. The 30-centimeter cube housed an 8-track player for four tapes of instrumental recordings and included a microphone to sing into. He sold his machine in 1967 to a Japanese trading company, which then sold it to restaurants, bars, and hotel banquet halls, where they used it as entertainment. The machine was coined karaoke in the 1970s to describe the act of singing along to prerecorded music. The term is a combination of two Japanese words: kara, meaning empty, and okesutora, meaning orchestra. In a few years, dedicated establishments known as karaoke bars began to open across Japan. Today the country has more than 8,000, according to Statista. The karaoke machine has been commemorated as an IEEE Milestone. The dedication ceremony was held in June in the area that houses karaoke booths connected to the Shinagawa Prince Hotel in Tokyo. Negishi’s family attended the event along with IEEE leaders. Negishi died last year at the age of 100. He was grateful that people enjoy karaoke around the world, his son, Akihiro Negishia, said at the ceremony, “though he didn’t imagine it to spread globally when he created it.” Accidentally inventing one of the world’s favorite pastimes Shigeichi Negishi grew up in Tokyo, where his mother ran a tobacco store and his father oversaw regional elections as a government official. After earning a bachelor’s degree in economics from Hosei University in Tokyo, he was drafted into the Imperial Japanese Army during World War II. He became a prisoner of war and spent two years in Singapore before being released in 1947. He returned to Tokyo and sold cameras for electrical parts manufacturer Olympus Corp. In 1956 he started Nichiden Kogyo, which manufactured and assembled portable radios for the home and car, according to the Engineering and Technology History Wiki entry about the karaoke machine. Negishi would start each morning singing along to the “Pop Songs Without Lyrics” radio show, according to a Forbes article. He typically didn’t sing in the office, but one fateful day he did. Negishi was inspired to engineer one of the 8-track tape decks his company manufactured into what is now known as the karaoke machine An 8-track tape deck can play and record audio using magnetic tape cartridges. Nichiden Kogyo’s Music Box was a 30-centimeter cube with slots to insert four 8-track tapes on the top panel, with control buttons to play, stop, or skip to the next song. Inside each 13-centimeter-long rectangular 8-track cartridge is a loop of almost 1 cm-wide magnetic tape that is coiled around a circular reel, as explained in an EverPresent blog post on the technology. A small motor inside each cartridge pulls the tape across an audio head inside the player, which reads the magnetic patterns and translates them into sound. Each tape had a metal sensing strip that notified a solenoid coil located in the player when a song had ended or if a person pressed the button to switch to the next song, according to an Autodesk Instribules blog post. The coil created a magnetic field when electricity passed through it—which rotated the spindle on which the audio head was mounted to move to the next track on the tape. Each tape could hold about eight songs. Negishi added a microphone amplifier to the player’s top panel, as well as a mixing circuit. The user could adjust the volume of the music and the microphone. He also recorded 20 of his favorite songs onto the tapes and printed out the lyrics on cardstock. He tested the machine by singing a popular ballad, “Mujo no Yume” (“The Heartless Dream”). “It works! That’s all I was thinking,” Negishi told reporter Matt Alt years later, when asked what his thoughts were the first time he tested the Music Box. Alt wrote Pure Invention: How Japan Made the Modern World. In 1969 engineers at Tokyo-based trading company Kokusai Shohin added a coin acceptor to the machine, renaming the Music Box the Sparko Box.Dr. Tomohiro Hase The fees to file a patent were too expensive, according to the ETHW entry, so in 1967 Negishi sold the rights to the machine to Mitsuyoshi Hamasu, a salesman at Kokusai Shohin. The Tokyo-based trading company began selling and leasing the machines by the end of the year. In 1969 engineers at Kokusai Shohin added a coin acceptor to the machine. The company renamed the Music Box the Sparko Box. In six years, about 8,000 units were sold, Hamasu said in an interview about the rise of karaoke. Karaoke became so popular that in the 1980s, venues and bars specializing in soundproofed rooms known as karaoke boxes emerged. Groups could rent the rooms by the hour. Negishi’s family owns the first Music Box he made. It still works. The Milestone plaque recognizing the karaoke machine is on display in front of the former headquarters of Nichiden Kogyo, which Negishi turned into a tobacco shop after he retired. The shop is now owned by his daughter. The plaque reads: “The first karaoke machine was created in 1967 by mixing live vocals with prerecorded accompaniment for public entertainment, leading to its worldwide popularity. Created by Shigeichi Negishi of Nichiden Kogyo, and originally called Music Box (later Sparko Box), it included a mixer, microphone, and 8-track tape player, with a coin payment system to charge the singer. An early operational machine has been displayed at the original company site in Tokyo.” Administered by the IEEE History Center and supported by donors, the Milestone program recognizes outstanding technical developments around the world. The IEEE Tokyo Section sponsored the nomination.

3 days ago 5 votes
Toronto's underground labyrinth

How Canada's largest city developed a 30 kilometer network of pedestrian tunnels

3 days ago 6 votes
In Yellowstone, Restored Bison Replenish Grasslands

Bison have made a remarkable comeback in Yellowstone National Park, going from fewer than two dozen animals at the turn of the last century to roughly 5,000 today. Their return, a study finds, has had a remarkable impact on grasslands in the region. Read more on E360 →

3 days ago 6 votes
The Sudden Surges That Forge Evolutionary Trees

An updated evolutionary model shows that living systems evolve in a split-and-hit-the-gas dynamic, where new lineages appear in sudden bursts rather than during a long marathon of gradual changes. The post The Sudden Surges That Forge Evolutionary Trees first appeared on Quanta Magazine

4 days ago 9 votes
25 years of Nano Letters

Back in the dawn of the 21st century, the American Chemical Society founded a new journal, Nano Letters, to feature letters-length papers about nanoscience and nanotechnology.  This was coincident with the launch of the National Nanotechnology Initiative, and it was back before several other publishers put out their own nano-focused journals.  For a couple of years now I've been an associate editor at NL, and it was a lot of fun to work with my fellow editors on putting together this roadmap, intended to give a snapshot of what we think the next quarter century might hold.  I think some of my readers will get a kick out of it.

4 days ago 9 votes