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Is front or back of roller coaster scarier?

In a typical coaster design, the riders in the front car get an unobstructed view of all these obstacles whipping past them. In a coaster that has seats facing backward, the rear car offers the best of both worlds -- you get a great view and the most intense ride.



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The best seat on a coaster, then, is a matter of personal taste. If you love the feeling of weightlessness, head for the back. If you want the best view of the action, head for the front. The cars in the middle provide the weakest ride, but it's a good bet you'll still have a good time.

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If you love the feeling of weightlessness, head for the back. If you want the best view of the action, head for the front. The cars in the middle provide the weakest ride, but it's a good bet you'll still have a good time.

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Keep your eyes open if you experience nausea. Some people will experience motion sickness while they are on a roller coaster. In order to combat this, you can keep your eyes open. This way you will be able to see what is coming and this will allow your body to predict the movements.

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If there's a chance you might feel sick from the roller coasters and other rides, eat a bland breakfast (or other meal) before you go. You want something in your stomach to keep it settled, so choose bland foods like plain cereal, toast and crackers or scrambled eggs with nothing else in or on them.

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Take Dramamine® Non-Drowsy. If you know certain rides at the park will leave you feeling nauseous, start taking Dramamine® Non Drowsy as directed 30 minutes to an hour before you arrive at the park. Try our Dramamine® Non-Drowsy to help you limit your nausea and enjoy the day.

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If you love the feeling of weightlessness, head for the back. If you want the best view of the action, head for the front. The cars in the middle provide the weakest ride, but it's a good bet you'll still have a good time.

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The normal force however has a small magnitude at the top of the loop (where the rider often feels weightless) and a large magnitude at the bottom of the loop (where the rider often feels heavy).

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Riders may experience weightlessness at the tops of hills (negative g-forces) and feel heavy at the bottoms of hills (positive g-forces). This feeling is caused by the change in direction of the roller coaster. At the top of a roller coaster, the car goes from moving upward to flat to moving downward.

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Roller coasters tend to be tall, with long drops, making them challenging for those with a fear of heights. Claustrophobia: By design, roller coaster seats are small and tight, and the restraints fit extremely snugly. This is necessary for safety but can trigger claustrophobia.

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The normal force however has a small magnitude at the top of the loop (where the rider often feels weightless) and a large magnitude at the bottom of the loop (where the rider often feels heavy).

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At the top of the loop, when you're completely upside down, gravity is pulling you out of your seat, toward the ground, but the stronger acceleration force is pushing you into your seat, toward the sky. Since the two forces pushing you in opposite directions are nearly equal, your body feels very light.

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When you go around a turn, you feel pushed against the outside of the car. This force is centripetal force and helps keep you in your seat. In the loop-the-loop upside down design, it's inertia that keeps you in your seat. Inertia is the force that presses your body to the outside of the loop as the train spins around.

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People with high blood pressure and/or heart conditions are warned not to ride roller coasters because of the way they tax the cardiovascular system.

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According to clinical psychologist Judy Kurianski, high tempo rides expose us to “good fear.” Our brains perceive the drops and heart-stopping twists to be “safe” and “predictable,” so riding these thrill rides becomes therapeutic, especially as we scream out our anxieties.

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People with high blood pressure and/or heart conditions are warned not to ride roller coasters because of the way they tax the cardiovascular system. The adrenaline rush that roller coasters give you causes a rapid spike in your heart rate and blood pressure.

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