Dished or spherical end-plates provide higher strength due to their geometric shape, which allows for uniform distribution of stress across the surface. This curvature helps to minimize stress concentrations that can occur in flat plates, particularly at the edges. Additionally, the shape enhances resistance to external pressures and loads, making them more effective in handling internal and external forces compared to flat end-plates. Overall, the design contributes to a more efficient structural integrity and durability.
sport? Vital and under rated! Sprinting, jumping, powerlifting, olympic lifting, rowing, are all based on relative strength wheather you have realized it or not. The stronger you are in relation to your body weight the faster you will be able run, and the higher you will be able to jump its as simple as that. Absolute strength isn't the best indicator for speed and jumping ability. Also on a practical side it makes life easier. Eg: walking up stairs.
Both the Earth and Sun are roughly spherical and rotate on an axis. Both have satellite bodies and revolve around a larger mass (Earth around the Sun in the solar system, the Sun as part of the Milky Way Galaxy). Both have mass that imparts gravity. Although the Earth has a higher percentage of heavier atoms (iron, aluminum, oxygen) compared to the Sun (mostly hydrogen, some helium) both contain at least some of the same chemical elements. Each is also hotter at its core than its surface.
The factor of safety (FoS) is a measure used to ensure that structures can withstand loads without failing. It is calculated using the formula: FoS = Ultimate Strength / Allowable Stress. Here, the ultimate strength is the maximum load a material can bear, while the allowable stress is the maximum load that a material can safely support without risk of failure. A higher FoS indicates a greater margin of safety in design.
The stress reduction factor is a product of the relationship between the Unconfined compressive strength of a rock and the sigma 1, or principal stress field in that area. The higher the value, the more likely the rock is to deform when placed under load.
There are two answers to the question - Digital or analog. Here is the reason why: Digital signal are very robust signals as long as they do not fall below a certain strength and quality. As long as the signal is above that threshold, a receiver should be able to interpret the data correctly. That means a full quality image even though the signal may only just be above the strength and quality threshold. Analog signals need a higher signal strength and quality to achieve full quality images at the receiver. As the signal strength and quality reduce, more noise and other distortion can be detected in the image. Despite this, a signal strength and quality far lower than an equivalent digital signal will still be received. The image may be degraded to the point where noise is intrusive, but the content can still be seen. Broadcasters take into account the differing requirements of digital television and will make efforts to ensure that the signals received are of sufficient quality to provide reliable programs. It is perhaps worth pointing out that signal strength and signal quality are two separate measurements. Quality is just as important as strength so signal strength alone will not guarantee good reception in all cases.
Yes. Typically higher GSM means higher compression strength.
The strength of the chew. Lower the number higher the strength
Raise your strength level by training to deal higher damage. and having higher strength bonus (provided by armour and weapons) you may also hit higher
HDPE has higher density therefore it has greater tensile strength
The higher the strength and attack the more you own.
MgF2 is higher that LiF do to the greater bond strength in MgF2. This greater strength is indicated by the charge of Mg (+3) which is higher than the +2 charge of Li. Also the MgF2 is larger in mass.
In my opinion, defence for higher levels is not that hard, but takes time. Attack and strength are good to raise. I recommend training all of them.
Try being a pupil of a high strength brute like http://god-of-strength.mybrute.com/ Also put strength in your name to increase the chances!
To calculate the strength of a magnet, you can use a gaussmeter to measure the magnetic field strength in units of gauss or tesla. The higher the measurement, the stronger the magnet.
Higher the carbon the steel will have higher TS up to certain point.
The strength of a rock in-situ is almost always less (and sometimes very significantly less) than the strength when measured in a laboratory.
High yeild strength deformed bars. The characteristic strength of these bars are higher than mild steel.