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Oct 21, 2023 · distance = speed x time. Rate and speed are similar since they both represent some distance per unit time like miles per hour or kilometers per hour. If rate r is the same as speed s, r = s = d/t. You can use the equivalent formula d = rt which means distance equals rate times time. distance = rate x time. To solve for speed or rate use the ...
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Number of years, x, with 365 days = 365 * x plus, Number of...
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It describes how quickly or slowly an object moves from one place to another. The standard (SI) unit of speed is meters per second (m/s), but it can also be expressed in other units, such as kilometers per hour (km/h), miles per hour (mph), or feet per second (ft/s), depending on the context or the country's measurement system.
They do not store directly personal information, but are based on uniquely identifying your browser and internet device. If you do not allow these cookies, you will experience less targeted advertising. Free math problem solver answers your algebra homework questions with step-by-step explanations.
The formula can be rearranged in three ways: speed = distance ÷ time. distance = speed × time. time = distance ÷ speed. To calculate one of the variables (speed, distance or time) we need the ...
May 1, 2024 · Our calculator finds that v r e s = 16.55 km/h v_{\rm res} = 16.55\, \text{km/h} v res = 16.55 km/h and θ r e s = 25 ° \theta_{\rm res} = 25\degree θ res = 25°. It also shows the absolute values of the x and y components of the resultant velocity vector. You can check your results using the formulas below:
The most common units of speed are metres per second (m/s), kilometres per hour (km/h) and miles per hour (mph). ... Laura walks 17 km at an average speed of 4.25 km/h. Calculate how long it took ...
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Let's sum that up to form the most essential projectile motion equations: 1. Launching the object from the ground (initial height h = 0): Horizontal velocity component: V x = V 0 cos α. V_\mathrm x = V_0 \cos \alpha V x = V 0 cosα. Vertical velocity component: V y = V 0 sin α − g t.
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