What is FAST.com measuring? FAST.com speed test gives you an estimate of your current Internet speed. You will generally be able to get this speed from leading Internet services, which use globally distributed servers.

Why does FAST.com focus primarily on download speed? Download speed is most relevant for people who are consuming content on the Internet, and we want FAST.com to be a very simple and fast speed test.


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How are the results calculated? To calculate your Internet speed, FAST.com performs a series of downloads from and uploads to Netflix servers and calculates the maximum speed your Internet connection can provide. More details are in our blog post.

What can I do if I'm not getting the speed I pay for? If results from FAST.com and other internet speed tests (like dslreports.com or speedtest.net) often show less speed than you have paid for, you can ask your ISP about the results.

Speed is a 1994 American action film directed by Jan de Bont (in his feature film directorial debut) and written by Graham Yost. The film stars Keanu Reeves, Dennis Hopper, Sandra Bullock, Joe Morton, and Jeff Daniels. Its story revolves around a bus that is rigged by a terrorist to explode if its speed falls below 50 miles per hour.

Screenwriter Graham Yost was told by his father, Canadian television host Elwy Yost, about a 1985 film called Runaway Train starring Jon Voight, about a train that speeds out of control. The film was based on a 1963 concept by Japanese filmmaker Akira Kurosawa. Elwy mistakenly believed that the train's situation was due to a bomb on board. (Such a theme had in fact been used in a 1975 Japanese film, The Bullet Train.) After seeing the Voight film, Graham decided that it would have been better if there had been a bomb on board a bus with the bus being forced to travel at 20 mph to prevent an actual explosion. A friend suggested that this be increased to 50 mph.[5] The film's end was inspired by the end of the 1976 film Silver Streak. Yost had initially named the film Minimum Speed reflecting on the plot element of the bus being unable to drop below a speed. He realized that using "minimum" would immediately apply a negative connotation to the title, and simply renamed it to Speed.[6]

For the character of Annie, Yost said that they initially wrote the character as African American and as a paramedic as to justify how she would be able to handle driving a speeding bus through traffic. The role was offered to Halle Berry but she declined the part.[6] Berry would later regret the decision.[12] Later, the character had then been changed to a driver's education teacher, and made the character more of a comic-relief sidekick to Jack, with Ellen DeGeneres in mind for the part.[13] Instead, Annie became both Jack's sidekick and later love interest, leading to the casting of Sandra Bullock. Sandra Bullock came to read for Speed with Reeves to make sure there was the right chemistry between the two actors. She recalls that they had to do "all these really physical scenes together, rolling around on the floor and stuff."[14] Meryl Streep and Kim Basinger were also offered the role of Annie but both declined.[15] Anne Heche was offered the opportunity to consider the role.[16]

Eleven GM New Look buses (TDH-5303)[19] and three Grumman 870 buses[20] were used in the film's production. Two of them were blown up, one was used for the high-speed scenes, one had the front cut off for inside shots, and one was used solely for the "under bus" shots. Another bus was used for the bus jump scene, which was done in one take.[21] The buses were painted in livery and colors approximating those of the Big Blue Bus serving Santa Monica, although the transit agency (Santa Monica Intercity Lines) and route (33 Downtown) were fictionalized for the film.[19] One of the buses used for filming was sold at auction for US$102,000 in 2018.[22]

In everyday use and in kinematics, the speed (commonly referred to as v) of an object is the magnitude of the change of its position over time or the magnitude of the change of its position per unit of time; it is thus a scalar quantity.[1] The average speed of an object in an interval of time is the distance travelled by the object divided by the duration of the interval;[2] the instantaneous speed is the limit of the average speed as the duration of the time interval approaches zero. Speed is the magnitude of velocity (a vector), which indicates additionally the direction of motion.

Speed has the dimensions of distance divided by time. The SI unit of speed is the metre per second (m/s), but the most common unit of speed in everyday usage is the kilometre per hour (km/h) or, in the US and the UK, miles per hour (mph). For air and marine travel, the knot is commonly used.

The fastest possible speed at which energy or information can travel, according to special relativity, is the speed of light in vacuum c = 299792458 metres per second (approximately 1079000000 km/h or 671000000 mph). Matter cannot quite reach the speed of light, as this would require an infinite amount of energy. In relativity physics, the concept of rapidity replaces the classical idea of speed.

Italian physicist Galileo Galilei is usually credited with being the first to measure speed by considering the distance covered and the time it takes. Galileo defined speed as the distance covered per unit of time.[3] In equation form, that is v = d t , {\displaystyle v={\frac {d}{t}},} where v {\displaystyle v} is speed, d {\displaystyle d} is distance, and t {\displaystyle t} is time. A cyclist who covers 30 metres in a time of 2 seconds, for example, has a speed of 15 metres per second. Objects in motion often have variations in speed (a car might travel along a street at 50 km/h, slow to 0 km/h, and then reach 30 km/h).

Speed at some instant, or assumed constant during a very short period of time, is called instantaneous speed. By looking at a speedometer, one can read the instantaneous speed of a car at any instant.[3] A car travelling at 50 km/h generally goes for less than one hour at a constant speed, but if it did go at that speed for a full hour, it would travel 50 km. If the vehicle continued at that speed for half an hour, it would cover half that distance (25 km). If it continued for only one minute, it would cover about 833 m.

If s {\displaystyle s} is the length of the path (also known as the distance) travelled until time t {\displaystyle t} , the speed equals the time derivative of s {\displaystyle s} :[2] v = d s d t . {\displaystyle v={\frac {ds}{dt}}.}

In the special case where the velocity is constant (that is, constant speed in a straight line), this can be simplified to v = s / t {\displaystyle v=s/t} . The average speed over a finite time interval is the total distance travelled divided by the time duration.

Different from instantaneous speed, average speed is defined as the total distance covered divided by the time interval. For example, if a distance of 80 kilometres is driven in 1 hour, the average speed is 80 kilometres per hour. Likewise, if 320 kilometres are travelled in 4 hours, the average speed is also 80 kilometres per hour. When a distance in kilometres (km) is divided by a time in hours (h), the result is in kilometres per hour (km/h).

Average speed does not describe the speed variations that may have taken place during shorter time intervals (as it is the entire distance covered divided by the total time of travel), and so average speed is often quite different from a value of instantaneous speed.[3] If the average speed and the time of travel are known, the distance travelled can be calculated by rearranging the definition to d = v  t . {\displaystyle d={\boldsymbol {\bar {v}}}t\,.}

Expressed in graphical language, the slope of a tangent line at any point of a distance-time graph is the instantaneous speed at this point, while the slope of a chord line of the same graph is the average speed during the time interval covered by the chord. Average speed of an object isVav = st

Speed denotes only how fast an object is moving, whereas velocity describes both how fast and in which direction the object is moving.[5] If a car is said to travel at 60 km/h, its speed has been specified. However, if the car is said to move at 60 km/h to the north, its velocity has now been specified.

The big difference can be discerned when considering movement around a circle. When something moves in a circular path and returns to its starting point, its average velocity is zero, but its average speed is found by dividing the circumference of the circle by the time taken to move around the circle. This is because the average velocity is calculated by considering only the displacement between the starting and end points, whereas the average speed considers only the total distance travelled.

According to Jean Piaget, the intuition for the notion of speed in humans precedes that of duration, and is based on the notion of outdistancing.[11] Piaget studied this subject inspired by a question asked to him in 1928 by Albert Einstein: "In what order do children acquire the concepts of time and speed?"[12] Children's early concept of speed is based on "overtaking", taking only temporal and spatial orders into consideration, specifically: "A moving object is judged to be more rapid than another when at a given moment the first object is behind and a moment or so later ahead of the other object."[13]

Download speed measures how fast information can transfer to you. It affects things like how long it takes to download large files, update games, or show pages with lots of photos. Download speed is measured in megabits per second (Mbps). One gigabit is 1000 Mbps, two gigabits is 2000 Mbps.

Upload speed measures how fast information can transfer from you. It affects things like how you appear on video calls, how fast you can upload files to the cloud, and how long it takes to add attachments to emails. Upload speed is measured in megabits per second (Mbps). 006ab0faaa

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