Loni Willison, once a sought-after fitness model gracing the covers of numerous magazines, now finds herself living on the streets, often seen rummaging through dumpsters in California.
The 40-year-old, whose life took a drastic turn after her divorce from Baywatch star Jeremy Jackson, recently spoke candidly about her struggles. According to Loni, her downward spiral began after her tumultuous marriage ended in 2014.
In an interview with X17 Online in May 2023, Loni pointed to her ex-husband as a major factor in her collapse, accusing him of abuse. “My ex-husband. Getting married. At least I got divorced,” she remarked when asked about the cause of her homelessness. “He set everything up to do this to me.”

Loni and Jeremy married in 2012, but their relationship ended two years later, which left Loni grappling with mental health challenges, including depression and anxiety. Her struggles were compounded by addiction to alcohol and crystal meth, ultimately causing her to lose both her career and her home.
Despite receiving offers of help, Loni has turned them down, preferring to maintain her independence. She has been quoted saying, “I don’t need help. I have everything I need.”

Speaking to X17 Online, Loni revealed she is in constant pain, adding that she can’t live indoors due to a strange and intense physical reaction to electricity. “I was electrocuted every day for nearly a year, and now I can’t be near appliances or anything with electricity,” she explained. “I think because I pick up on electricity, I also pick up on chemicals, metals, and other materials. My body filters that stuff.”
She also mentioned the possibility of needing a detailed medical examination to understand the full extent of the issue. “It’s pretty intense,” she said.

In addition to her physical pain, Loni’s appearance has drastically changed. She has lost some of her upper front teeth and often wears worn, dirty clothes as she navigates life on the streets.
Loni’s ex-husband, Jeremy, has faced his own struggles. In 2017, he was sentenced to 270 days in prison after pleading guilty to charges related to a stabbing incident in Los Angeles. He has also battled addiction.

As for Loni, life remains a daily challenge. She struggles to make ends meet, relying on a shopping cart to carry the few belongings she still has, including food. The once-beautiful blonde model is now a far cry from her former self, barely recognizable amidst the hardship she endures.
Can you solve this math puzzle
Have you ever come across a math problem that seems easy at first glance, only to realize that most people get it wrong? The equation 9 – 9 ÷ 9 + 9 – 9 ÷ 9 = ? is one such puzzle that confuses many. It looks simple, but if you’re not careful, you might end up with the wrong answer.
Are you ready to put your math skills to the test? Take a moment to solve it before reading ahead. Think you got it right? Let’s find out!
Why Do So Many People Get This Wrong?

At first glance, this equation appears straightforward. However, small details in mathematical rules trip people up. Here are some common mistakes that lead to the wrong answer:
- Ignoring the Order of Operations (PEMDAS/BODMAS) – Many people solve the problem from left to right without following the correct order of operations.
- Misplacing Parentheses (Even When They Aren’t Written) – Some assume parentheses where there are none, changing how they approach division and subtraction.
- Rushing Through the Calculation – The problem is designed to look easy, so people tend to solve it quickly and overlook critical steps.
So, what’s the correct approach? Let’s break it down step by step.
Step-by-Step Solution
To solve this equation correctly, we must follow the order of operations. The most commonly used rule is PEMDAS (Parentheses, Exponents, Multiplication and Division (from left to right), Addition and Subtraction (from left to right)).
Video : Find The Missing Number – Hard Math Puzzle
The given equation:
9 – 9 ÷ 9 + 9 – 9 ÷ 9
Step 1: Solve the Division First
According to PEMDAS, division comes before subtraction and addition. So, let’s divide first:
- 9÷9=19 ÷ 9 = 19÷9=1
- 9÷9=19 ÷ 9 = 19÷9=1
Now, substitute these values back into the equation:
9 – 1 + 9 – 1
Step 2: Perform Addition and Subtraction from Left to Right
Now, we calculate in order from left to right:
- 9 – 1 = 8
- 8 + 9 = 17
- 17 – 1 = 16
So, the correct answer is: 16
Common Incorrect Answers and Why They Happen
Many people arrive at incorrect answers because they don’t follow the correct order of operations. Here are some of the most common mistakes:
- Answer: 0 – This happens when someone groups all the numbers together without following PEMDAS, incorrectly simplifying the problem as:
9−9−9+9−9=09 – 9 – 9 + 9 – 9 = 09−9−9+9−9=0 - Answer: 1 – Some mistakenly subtract 9 from itself first before dividing, leading to:
(9−9)÷9+9−9÷9=1(9 – 9) ÷ 9 + 9 – 9 ÷ 9 = 1(9−9)÷9+9−9÷9=1
These errors reinforce the importance of following the correct mathematical rules step by step.
Why Understanding Order of Operations Matters
You might wonder—why does it even matter? Well, mathematics is built on logical rules, and following them correctly ensures we get consistent, accurate answers. The order of operations is used in everything from programming to engineering to everyday calculations.
Video : Only 1% of people pass this logic test
Think about it this way: If a recipe tells you to bake a cake at 350°F for 30 minutes before adding frosting, you wouldn’t reverse the steps, right? Math works the same way—sequence matters!
Put Your Skills to the Test
Did you get the correct answer? Share your response in the comments! Were you surprised by how easy it was to make a mistake?
If you enjoy solving puzzles like this, challenge your friends and see if they can get it right! Math riddles help improve problem-solving skills and boost logical thinking.
Want more brain teasers like this? Keep testing yourself with tricky puzzles and improve your critical thinking skills! Who knows? The next time you see a math problem like this, you might be among the 10% who get it right on the first try!
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