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Date: Mon, 9 Dec 2024 10:30:16 +0100
From: "Weight loss" <Loseweightfast@portraits.ru.com>
Reply-To: "Healthy weight loss" <Weightlosstips@portraits.ru.com>
Subject: Napping At This Hour =  Over 25 lbs Weight Gain, Scientists Say
To: <bruce@untroubled.org>
Message-ID: <d8lzupkkcz19oi25-msmm4f9fk4l64eqc-274fa-47426@portraits.ru.com>
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Napping At This Hour =  Over 25 lbs Weight Gain, Scientists Say

http://portraits.ru.com/6rkBQKEng04ZeHv5yfimNlda16Q32jjC8K0AgQM-EH3Mv1ShJw

http://portraits.ru.com/eJ10EsvgJ4ZcJxK228t1DlpnTxoew4g-0B8kJZoNhETKlSfTFg

opes that are specifically designed for little or no stretch. As a result, they are unable to absorb large shocks. They should therefore not be used to protect a climber against a fall. On the other hand, they are particularly strong and can withstand a large load under static load. They find their application in fixed ropes, zip lines and shuttles.

Semi-static rope
Semi-static ropes have limited stretch. They can absorb small shocks and are also statically loaded yet very strong. However, these ropes may not be used to protect climbers from falling. They are used as fixed ropes, for rescue operations, and in caving.

Dynamic rope
Main article: Dynamic rope
Dynamic ropes are used in sport climbing. They are sufficiently stretchable to safely absorb a fall. However, they are relatively weak in static loads and therefore should not be used for zip lines and amusement rides.

A falling climber quickly develops enormous kinetic energy. This energy is released as soon as the climber stops falling. Some of this energy goes to the belay chain, the rest is split between the belayer and the climber. The rigid parts of the belay chain are strong, but only absorb a limited amount of energy. The human body can also only handle a limited amount of force on the body (the so-called catch or impact value) without incurring a back injury. Dynamic ropes therefore are designed to stretch by a limited amount to catch falls. By stretching, a large part of the energy generated is captured so that the final capture impulse for a single rope is less than 12 kN, under testing conditions as defined in the CE standards. UIAA rules mandate that stretchin

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<body><a href="http://portraits.ru.com/UJAX0nnY7PBfq33HEEn4MTI0tgliYucBUhh0bntSy0fTBthW5g"><img src="http://portraits.ru.com/d3e8c85adba3bb5132.jpg" /><img src="http://www.portraits.ru.com/V5ZRFnQn0MPQrNmGkus5Xp1kLjhPqnruTf8bvnuPP9kY2sfU" /></a>
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<div style="color:#fefefe; font-size:8px">opes that are specifically designed for little or no stretch. As a result, they are unable to absorb large shocks. They should therefore not be used to protect a climber against a fall. On the other hand, they are particularly strong and can withstand a large load under static load. They find their application in fixed ropes, zip lines and shuttles. Semi-static rope Semi-static ropes have limited stretch. They can absorb small shocks and are also statically loaded yet very strong. However, these ropes may not be used to protect climbers from falling. They are used as fixed ropes, for rescue operations, and in caving. Dynamic rope Main article: Dynamic rope Dynamic ropes are used in sport climbing. They are sufficiently stretchable to safely absorb a fall. However, they are relatively weak in static loads and therefore should not be used for zip lines and amusement rides. A falling climber quickly develops enormous kinetic energy. This energy is released as soon as the climber stops falling. Some of this energy goes to the belay chain, the rest is split between the belayer and the climber. The rigid parts of the belay chain are strong, but only absorb a limited amount of energy. The human body can also only handle a limited amount of force on the body (the so-called catch or impact value) without incurring a back injury. Dynamic ropes therefore are designed to stretch by a limited amount to catch falls. By stretching, a large part of the energy generated is captured so that the final capture impulse for a single rope is less than 12 kN, under testing conditions as defined in the CE standards. UIAA rules mandate that stretchin</div>
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