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New thriller by Israeli-Canadian Herschy Katz combines love of hockey with intrigue behind the Iron Curtain in 1972

left: author Herschy Katz
cover of “The Ninth Terrorist”

By BERNIE BELLAN In 2019 I wrote a review of a book titled “The Clarinetist”. It had been sent to me by an expatriate Canadian who had moved to Israel in 1984 by the name of Herschel Katz.
As I noted in that review, the book was quite good for a first-time author. In it we were introduced to a young Montreal high school student by the name of Danny Kahn who ends up enmeshed in an intriguing situation having to do with the Montreal father of his girlfriend.

The father, it turns out, is tied in with some very shady characters and, one thing leading to another, Danny becomes involved in some hair-raising adventures that take him from Montreal to New York, and then Israel.
Katz had become a writer, he noted on the book jacket, because “Several years ago, the author worked as a part time book reviewer, then decided to try writing his own story.”
Now, two years later, Katz has come up with another mystery novel, again featuring Daniel Khan (who, I guess, has graduated from being called “Danny”). By this time Daniel has progressed to becoming a 22-year old medical student at McGill, also a writer for the McGill student newspaper. The book is titled “The Ninth Terrorist” and, after reading it, I sent Katz a note saying he had the makings of another Daniel Silva, who is one of the world’s most popular mystery writers and who has also created a recurrent hero by the name of Gabriel Allon.

As good as “The Clarinetist” was for a first-time effort, “The Ninth Terrorist” shows terrific improvement on Katz’s part in terms of plot structuring and dialogue. The book actually blends three different plots into one overarching story, which has to do with nefarious activities involving East Bloc bad guys in the 1970s – when the Soviet Union was still very much a Communist dictatorship and closely aligned with Palestinian terrorist organizations .
The story begins with the legendary “Summit Series” between Canada and the USSR in 1972, in which a team composed of Canada’s best professional hockey players from the NHL faced off against the powerful Soviet team in an eight-game series.
I had forgotten though, that at the same time as that series was being played, the Munich Olympics were also being staged and, anyone who was around then will no doubt recall how horrified we all were at the tragic murder of 11 Israeli athletes by members of the terrorist group known as “Black September”.
Into that backdrop of high drama Katz inserts Daniel Khan, who continues to display the ability as a clever agent that he first demonstrated in “The Clarinetist”. This time, however, Daniel is enmeshed in a series of events in which he has to play multiple roles, all the time fully aware that one slip-up could lead to his arrest and imprisonment in the Soviet Union.

Katz is clearly a great hockey fan and his depictions of the action during games are quite vivid. You don’t have to be a sports fan at all in order to enjoy the book though, as hockey merely serves as the excuse for Daniel to be able to go to the Soviet Union as a reporter. Still, setting so much of the action in venues that would resonate with Canadian sports fans makes “The Ninth Terrorist” all the more appealing.
I would note, too, that in my review of “The Clarinetist” I was somewhat critical of the dialogue in that book, writing that Katz could have used help in creating some more authentic sounding conversations between characters. This time around, the dialogue is much improved and sparkles with often very clever exchanges.
Turning Khan into a reporter is an especially credible device, as reporters have often served as agents for various intelligence services. The fact that Khan is a Canadian Jewish reporter who can easily substantiate his wanting to go to the Soviet Union (and who also speaks German, it turns out) certainly adds plausibility to his becoming an agent for not just one intelligence agency, but several, all of which are aware just how useful he can be to them.

One aspect of “The Ninth Terrorist”, however, that seems drawn straight out of the 1960s “Mission Impossible” television series (and later, the movies as well), is the use of facial disguises. Having a number of different characters put on masks that are so lifelike they can get you through any number of checkpoints is something that still remains a largely fictitious plot device – even at a time when 3D print technology has certainly made it more feasible.
Still, the ruse that Daniel Khan must employ in going back to the Soviet Union a second time – four months after the first Canada-Soviet series, certainly adds to the complexity – and intrigue of what is already a terrific spy novel. In fact, not only must he adopt a disguise at various times, he has to help others disguise themselves. At times it all becomes a little dizzying trying to remember just who it is that not only Daniel is pretending to be, but others as well.
Into this already fairly complicated plot Katz inserts a quite clever subplot having to do with someone who purportedly assisted the members of Black September when they went about kidnapping the 11 Israeli athletes in 1972. The individual, who is the “ninth terrorist” referred to in the title, turns out to be an extremely dangerous agent and Katz certainly makes this character come alive.

With action aplenty and very creative plotting, “The Ninth Terrorist” is an excellent thriller. When one considers that both “The Clarinetist” and “The Ninth Terrorist” have been self-published by Herschy Katz, one wonders how long it will be before he’s approached by a major publisher with a juicy offer to continue producing more in what could become a Daniel Khan series.
I asked Herschy how one could buy “The Ninth Terrorist”. (He had sent it to me as a pdf.) He replied that “My book is available directly from Pomeranz Booksellers in Jerusalem. www.Pomeranzbooks.com. My previous book, “The Clarinetist”, is also available through them.”
Both “The Clarinetist” and “The Ninth Terrorist” are now available on Amazon – Kindle for $9.99 CDN.
Then Herschy sent me another quite interesting tidbit of information after I told him that I was going to print an accompanying article, also about someone who entered into some subterfuge in the Soviet Union (in his case, smuggling tallisim and sidurim), during a hockey tournament. (See my story about Sherry Bassin on the opposite page.)
After I wrote Herschy about Sherry Bassin’s escapade, he sent me this note:
Dear Bernie,
A personal note about me you may want to add to your book review. My late father, Boris Katz, z”l, escaped Stalin in 1924 and came to Montreal as a young man. He and his nephew founded a business making men’s clothes, which became quite successful. During the 1950s, 60s and 70s, he would send packages of clothes to his family back in the USSR. Knowing how the Russian customs inspectors would steal the contents, he would pack extra jeans and put some American dollars inside the box, which, of course, were stolen. However, inside the cuffs and collars of the clothes that weren’t stolen, he sewed large amounts of cash, which his family ended up getting.
This tidbit I incorporated into my story, “The Ninth Terrorist”.
Herschy

I enjoy helping to publicize Jewish writers (in particular, writers from Israel) whose works might not otherwise receive much publicity because they’re self-published. In Herschy Katz’s case, providing a boost to a former Canadian who made aliyah 37 years ago, but who’s also remained a huge hockey fan, should be ample reason for some readers to want to proceed to buy “The Ninth Terrorist”. Herschy even sets some of the action in Winnipeg – in case you needed any more cajoling!

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Features

Hacker and Fraud Prevention for Online Gambling Profiles

Safeguard your online casino & sports betting accounts from cyber threats

Follow these 10 vital steps to reinforce your online gambling profile by enabling two-factor authentication, using VPNs, unique passwords and more.

With the global online gambling market projected to reach over $100 billion by 2026, securing your online casino and sportsbook accounts is more critical than ever. As digital wallets swell with winnings so too does the motivation for cybercriminals to steal credentials and loot accounts.

#1. Activate Two-Factor Authentication

Topping the list is two-factor authentication (2FA) – requiring two credentials to login instead of one at FanDuel. Often this entails providing your password plus a one-time code sent via SMS or email.

Per an Oracle study, implementing 2FA would have thwarted 99% of historical cyber attacks that involved stolen credentials.

Most regulated online gambling sites offer 2FA, accessible under account settings. Turn it on immediately for stronger defense.

#2. Never Reuse or Recycle Passwords 

A cardinal sin is recycling the same password across multiple sites or services. Once one account is breached, cyber thieves can access more accounts using that same password.

To avoid this, every account deserves a unique, strong password. For simplicity, utilize a password manager app to randomly generate and store site-specific passwords.

#3. Install a VPN for Public Wi-Fi Access 

When playing online casino games on shared/open wireless networks, your data flows openly and risks interception. That’s where virtual private networks (VPNs) come in.

VPNs encrypt all network traffic to and from your device. This protects your gambling activity and account credentials from Wi-Fi eavesdroppers. VPNs also disguise your IP address.

Some top-rated services include NordVPN, ExpressVPN and CyberGhost.

#4. Keep Software Updated & Run Anti-Virus Scans 

You must keep computers and mobile devices updated with the latest OS and security patches. Postponing critical updates leaves open dangerous holes that malware exploits.

Likewise run reputable anti-virus scans to catch viruses attempting to infiltrate systems and spy on login credentials for financial accounts.

#5. Verify the Security & Encryption of Sites 

When signing up at online betting sites and casinos, verify the legitimacy of their security measures:

  • Confirm the address starts with HTTPS, not HTTP
  • Check that data transmissions are encrypted using at least 128-bit SSL
  • Ensure site has proper licensing
  • Review privacy policy for data storage and sharing

Reputable sites will display trust badges from companies like Norton and TrustE.

#6. Avoid Account Sharing 

While tempting to give friends or relatives access to funded accounts, sharing login credentials is extremely risky. You lose control over deposits/withdrawals while exposing yourself to potential theft.

Instead, gift deposits to other player accounts or refer them to open their own secure accounts.

#7. Beware Account Takeover Scams 

Exercise caution if contacted unexpectedly about unusual account activity. Savvy scammers will pretend a breach occurred to trick you into handing over your username and password.

If concerned about account integrity, directly access the site yourself and contact customer support – don’t click any links in unsolicited emails.

#8. Monitor Financial Statements

Carefully review online betting account and credit card statements to detect unauthorized transactions right away. Dispute unrecognized activity ASAP to limit losses.

For further vigilance, some banks offer real-time purchase alerts via email or SMS.

#9. Don’t Save Payment Info 

Saving credit card or e-wallet details on gambling sites for faster future deposits also expedites withdrawals – by you and potentially hackers.

Instead, manually enter payment info each time to contain potential damage from any account infiltration.

#10. Create a Secure Email 

A strong yet oft-overlooked defense is creating a secure email account strictly for gambling transactions. Keep it completely separate from your personal email to isolate threats.

Use a nickname, enable 2FA and establish a strong password using special characters, numbers, case changes and 15+ letters.

Table: Comparison of Top VPNs for Online Gambling Site Security

VPN ServiceEncryption StandardNumber of Server LocationsAllows P2P TrafficNumber of Simultaneous ConnectionsMoney Back Guarantee
NordVPNAES 256-bit5400+Yes630 days
ExpressVPNAES 256-bit3000+Yes530 days
CyberGhostAES 256-bit7400+Yes745 days

Fortify Your Online Gambling Fortress 

As online casinos and sportsbooks explode in popularity, no player is immune to the growing plague of cyber fraud and account theft.

Guard your profile by enabling two-factor authentication, setting strong passwords, installing critical software updates and more. Also research site security measures and payment options.

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Features

Vital Role of True Randomness in Modern Computing

The critical need for true randomness in cryptography, simulations, and more

True randomness is essential for encryption, statistical sampling, simulations, and more computing applications to work effectively. We explore why.

The concept of randomness often evokes thoughts of unpredictability and chance occurrences. However in the world of computing, having access to true randomness is vital for many critical applications to function properly. Without the ability to generate random values and data, key aspects of modern technology simply would not work reliably.

In this article, we will explore what constitutes true randomness from a computational perspective, why it is crucially important, and some of the ways that software and hardware attempt to produce randomness reliably. Gaining insight into this topic highlights the dependence much of digital functionality has on the availability of non-deterministic, uniformly distributed random data.

What Makes Randomness “True”?

For data to be considered truly random from an information theory perspective, values must satisfy key mathematical and statistical qualities, for example at Lucky Seven Casino. True randomness implies meeting three core criteria:

  • Uniform distribution — All potential values have an equal probability of occurring so that no bias exists towards certain numbers.
  • Independence — The value at any position does not relate to or depends on values at other positions. Previous numbers do not influence future ones.
  • Unpredictability — Knowing some values provides no useful information to predict other values. Guessing upcoming numbers is mathematically impossible.

Hence, true randomness requires generated data featuring high entropy (information density) with no observable patterns or correlations over any length or time period analyzed. Values must pass various statisticatests of randomness to qualify. True randomness exists only in specific natural phenomena scientists believe exhibit fundamental uncertainty such as radioactive decay. Computational methods can attempt to produce randomness but technically generate only an approximation usually called pseudo-randomness. However for many practical purposes, computationally generated randomness proves sufficient if it passes robust statistical testing.

Why True Randomness Matters Cryptography 

Arguably, the area with the most crucial dependence on true randomness is cryptography. All modern encryption technologies require random number generation to ensure security. Encryption systems work by utilizing random numbers for:

  • Key generation
  • Initialization vectors
  • Salts
  • Nonces
  • Padding

Any bias, predictability or correlation within random values used for the above purposes significantly compromises encryption protocols and introduces vulnerabilities. With trillions of dollars transferred online daily and vast amounts of sensitive data stored digitally, safeguarding cryptography requires high-quality random number generation rooted in solid entropy sources.

Simulations & Modeling 

Outside of security, many more computing applications need randomness to operate correctly per their design intent. Monte Carlo simulations extensively utilize randomness to model complex real-world behaviors by running many iterations with differing random inputs. Financial analysis, climate modeling, nuclear reactions and molecular behavior represent common Monte Carlo simulation applications.

Games, Artificial Intelligence & Machine Learning 

Gaming, AI and ML commonly incorporate randomness to increase variation, introduce unpredictability, and improve realism. For example, non-player characters in video games use randomness for movement, dialog and behavior to feel more lifelike and less robotic. AI/ML leverage randomness to train networks more thoroughly against a wider possibility space and build more resilient models less prone to biases.

Generating True Randomness via Hardware 

Given the pervasive need for genuine randomness across computing, how do software and hardware reliably produce it? Most systems today use either specialized hardware random number generators or hybrid combinations of hardware and software.

Hardware options utilize the inherent randomness within low-level physical phenomena to produce entropy. Different techniques for generating randomness exist but most hardware implementations focus on three main sources:

  1. Thermal Noise
  2. Semiconductor Quantum Physics
  3. Chaotic Oscillator Outputs
Generator TypeDescription
Thermal NoiseAmplifies and extracts random electrical noise from resistor thermal vibrations
Quantum PhysicsLeverages quantum mechanical properties like photon emission timing from LEDs/lasers
Chaotic CircuitsUses unpredictable oscillator circuit outputs from chaos theory

Semiconductor-based solutions can generate high bitrates up to 5Gbps using compact modern chip fabrication allowing extensive harvestingof entropy. However these sources derive from complex, random physical processes proving impossible to predict or fully model mathematically. This unpredictability provides excellent entropy quality unattainable via software algorithms alone.

Most general-purpose computers now integrate random number generators within CPUs allowing applications access to decent hardware-based random data. For the highest security use cases, dedicated standalone hardware random number generators exist exceeding >100Gbps speeds. Hence accessing genuine randomness is available today even on common computing devices.

Cryptographically Secure Pseudo-Random Number Generators 

While hardware mechanisms utilize hard-to-predict physical phenomena to produce randomness, software solutions must take a different approach. Algorithmically-generated randomness cannot achieve true randomness from a physics perspective. However clever mathematical techniques like cyclical algorithms can generate randomness passing many statistical tests of randomness within their output bit length limits.

Cryptographically secure pseudo-random number generators (CSPRNG) serve as the premier software-based method for generating randomness. CSPRNGs work by repeatedly applying cryptographic primitives like hash or cipher functions on initial random seed values. This process produces a chain of output bits not reproducible without the original seed key. Leading CSPRNG algorithms include:

  • Hash_DRBG
  • HMAC_DRBG
  • CTR_DRBG

Software libraries implement these CSPRNGs so developers can integrate quality randomness into applications with proper seeding. Seeding establishes the initial starting point for randomness generation using an entropy source like hardware random number generators or timing variability.

CSPRNGs allow the production of vast quantities of randomized data for any purpose needed. Compared to hardware mechanisms limited by physics on maximum speeds, algorithms scale boundlessly in the bits created as long as adequate computational power exists.

Yet key differences between software and hardware randomness remain. While CSPRNG outputs pass statistical testing and contain no observable patterns, their pseudo-randomness means given the same seed, the exact same value sequence will generate each time. Also, if a CSPRNG algorithm or implementation has flaws, adversaries could predict and exploit output resulting in compromised security. Still, with proper cryptographic design and regular reseeding, CSPRNGs provide quality randomness for most software needs.

Conclusion

From the above exploration, we see true randomness plays a pivotal role across computing – from cybersecurity to simulations and beyond. While no substitutes for true physically-derived entropy exist, modern hardware and hybrid hardware-software solutions provide abundant randomness for practical usage.

However as computing continues evolving with new technologies like quantum, ensuring high-quality randomness generation tackles emerging information security and system reliability challenges. Access to ample true randomness stands necessary now for current computing functionality and lays the foundation for future innovation.

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Features

News from Israeli hotels

Roy Avidor new GM at The Ritz-Carlton, Herzliya

Introduction: The current wars in Gaza and Lebanon have had a disastrous effect on Israeli tourism. Recently we were contacted by a friend in the advertising business in Israel who asked us whether we would help to promote a couple of well-known Israeli hotels – who are hoping for a huge rebound in bookings once the wars come to an end.

Here is news about two leading Israeli hotels:

Mr. Roy Avidor is the new GM at The Ritz-Carlton, Herzliya.

We are delighted to welcome Roy Avidor as the new General Manager of The Ritz-Carlton, Herzliya!

Roy brings over a decade of leadership in the international hospitality industry, with a proven track record of operational excellence.

Most recently, Roy served as Director of Operations at the Sheraton Grand Tel Aviv, where he oversaw daily operations across multiple departments, always ensuring the highest standards of service. Prior to that, he held management positions at Celebrity Cruise Line and Isrotel Hotel Chain.

Roy’s extensive background in luxury hospitality, combined with his passion for service, makes him the perfect addition to our team and to his newest position as General Manager.

Boaz Elani Appointed General Manager of Sheraton Grand Hotel Tel Aviv

Boaz Elani has been named the new General Manager of the Sheraton Grand Hotel Tel Aviv, a prestigious property within the global luxury Marriott portfolio.

Bringing extensive expertise in luxury hospitality, Boaz most recently served as the General Manager of the Ritz-Carlton Herzliya, also part of the Marriott group. During his three-year tenure, he successfully navigated the hotel through two major challenges: the COVID-19 pandemic and the conflict in Israel. His steadfast dedication to exceptional service significantly enhanced guest satisfaction, solidifying the hotel’s reputation as a premier destination.

“I am honored by Marriott’s trust in me and thrilled to join the Sheraton Grand Tel Aviv team,” said Boaz. “This hotel holds a distinguished place as one of Israel’s finest and most iconic. Following its comprehensive renovation, we are committed to delivering unmatched experiences for our guests and continuing its tradition of excellence.”

The Sheraton Grand Tel Aviv, overlooking the Mediterranean, features 320 beautifully redesigned rooms, including premium, deluxe, and club accommodations, along with luxurious suites. Guests staying in club-level rooms enjoy exclusive access to the 18th-floor lounge, offering breathtaking sea views. The recent renovations incorporate modern aesthetics with natural, seaside-inspired materials, creating a serene and inviting ambiance.

The hotel boasts a range of world-class amenities, including a newly updated beachfront pool, a popular sushi bar open to both guests and the public, and a renowned gourmet breakfast. Its versatile meeting spaces and state-of-the-art conference halls have garnered international acclaim, earning it the 2024 World MICE Award for Best Event and Conference Hotel.

In line with Marriott’s global commitment to sustainability, the Sheraton Grand Tel Aviv has held Green Key Certification since 2014, highlighting its dedication to environmentally responsible practices.

With Boaz Elani at the helm, the Sheraton Grand Tel Aviv is poised to further elevate its status as a premier destination for both leisure and business travelers.

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