• Reposted from Instagram.com/explainlikeimfivee

    When you look through your windshield or at wet roads during bad weather, the light can scatter in many directions, creating glare and making it hard to see.

    This is because light waves naturally move in all directions, but when they hit something like water or glass, they can start moving in one direction. This creates glare, which makes things look fuzzy and bright.

    Polarized lenses in cameras can help reduce this glare. These lenses are designed to only let in light moving in one direction, which cuts down on the scattered light and makes the image clearer.

    This is why your phone's camera can often see the road better than you can during rain or fog - it filters out the visual noise and highlights the important details.

    But, apart from these things it is best to stop the car to the side with parking lights on and wait for the storm to clear.

    (- Driving_lessons/TT)

    #science #physics #lifehacks #learning #education #drivinglessons #explore #viral
    Reposted from Instagram.com/explainlikeimfivee When you look through your windshield or at wet roads during bad weather, the light can scatter in many directions, creating glare and making it hard to see. This is because light waves naturally move in all directions, but when they hit something like water or glass, they can start moving in one direction. This creates glare, which makes things look fuzzy and bright. Polarized lenses in cameras can help reduce this glare. These lenses are designed to only let in light moving in one direction, which cuts down on the scattered light and makes the image clearer. This is why your phone's camera can often see the road better than you can during rain or fog - it filters out the visual noise and highlights the important details. But, apart from these things it is best to stop the car to the side with parking lights on and wait for the storm to clear. (🎥- Driving_lessons/TT) #science #physics #lifehacks #learning #education #drivinglessons #explore #viral
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  • Reposted from instagram @ explainlikeimfivee

    When a truck is stuck in gravel, its tires spin without moving the vehicle forward because they can't get a good grip on the loose surface. By placing a log between the tires, we're essentially giving the truck a temporary traction aid.

    Imagine you're trying to climb a rope but keep slipping. If you wedge a stick between your feet and the rope, you can push against it to get a better grip and climb up.

    Similarly, when a log is placed between the truck's tires, it acts as a solid surface for the tires to push against. As the tires spin, they grip the log instead of the loose gravel.

    This grip helps to propel the truck forward and out of the stuck position, just like using the stick helps you climb the rope.

    #science #physics #offroading #explore #viral
    Reposted from instagram @ explainlikeimfivee When a truck is stuck in gravel, its tires spin without moving the vehicle forward because they can't get a good grip on the loose surface. By placing a log between the tires, we're essentially giving the truck a temporary traction aid. Imagine you're trying to climb a rope but keep slipping. If you wedge a stick between your feet and the rope, you can push against it to get a better grip and climb up. Similarly, when a log is placed between the truck's tires, it acts as a solid surface for the tires to push against. As the tires spin, they grip the log instead of the loose gravel. This grip helps to propel the truck forward and out of the stuck position, just like using the stick helps you climb the rope. #science #physics #offroading #explore #viral
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  • Bernoulli's Principle is a fundamental concept in fluid dynamics that describes the relationship between the speed of a fluid and its pressure. It states that as the speed of a fluid increases, its pressure decreases, and vice versa, as long as the flow is steady and the fluid is incompressible. This principle is often used to explain various phenomena in fluid mechanics, such as lift in aerodynamics, the behavior of fluids in pipes, and the operation of carburetors and wings. In simple terms, Bernoulli's Principle illustrates how the energy within a fluid is distributed between its kinetic energy (speed) and its potential energy (pressure), providing valuable insights into the behavior of fluids in motion.

    #physics #bernoulli #education #learn #experiment #science #maths #brainy

    Bernoulli's Principle is a fundamental concept in fluid dynamics that describes the relationship between the speed of a fluid and its pressure. It states that as the speed of a fluid increases, its pressure decreases, and vice versa, as long as the flow is steady and the fluid is incompressible. This principle is often used to explain various phenomena in fluid mechanics, such as lift in aerodynamics, the behavior of fluids in pipes, and the operation of carburetors and wings. In simple terms, Bernoulli's Principle illustrates how the energy within a fluid is distributed between its kinetic energy (speed) and its potential energy (pressure), providing valuable insights into the behavior of fluids in motion. #physics #bernoulli #education #learn #experiment #science #maths #brainy
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