Home / Physics / Acceleration

Acceleration

Suppose an object moves from one point to another such that its velocity at the initial point is different from that at the final point. Acceleration is defined as the rate at which the velocity changes. It is a vector quantity having both magnitude and direction.

Acceleration

To understand acceleration, let us take a numerical example. An object starts from rest and picks up speed such that its velocity becomes 5 m/s in 10 seconds. It took 10 s to go from 0 m/s to 5 m/s. Then, the rate at which its velocity changed is: (5 m/s – 0)/10 s = 0.5 m/s2. Therefore, its acceleration is 0.5 m/s2.

Examples

  • A plane taking off
  • Pressing the gas pedal of a car
  • A roller coaster riding on its tracks
  • A fruit falling from a tree
  • Throwing a football
  • Going up and down an elevator

Equation

Average Acceleration

Acceleration is the rate of change of velocity. In other words, it is the change in velocity over a given time interval. Suppose vi and vf are the initial and final velocities of the object at time ti and tf, respectively. Then, the average acceleration is

\[ a = \frac{v_f – v_i}{t_f-t_i} \\ => a = \frac{\Delta v}{\Delta t} \]

Where

Δv: Change in velocity

Δt: Time interval over which the change occurred

SI Unit: meters per second squared or m/s2

Imperial unit: feet per second squared or ft/s

Acceleration Formula

Note:

  1. Acceleration and velocity must not be confused. Velocity is the change in position with respect to time. If the object moves with a constant velocity, then Δv = 0, and its acceleration is zero.
  2. In the above equation, acceleration is the change in velocity over the change in time. It does not mean that if the velocity is high, the acceleration is high, or if the velocity is low, the acceleration is low. The velocity can be high, the acceleration can still be low, and vice versa.
  3. If the velocity changes by equal amounts in equal time intervals, the acceleration will remain constant. It is known as uniform or constant acceleration. The graphs below illustrate the difference between constant acceleration, uniformly increasing acceleration, and nonuniformly increasing acceleration.
  4. Can acceleration be negative. Generally, acceleration refers to situations where the velocity increases with time. In this case, the acceleration is a positive quantity. However, if the velocity decreases with time, the magnitude of acceleration will be negative. The object slows down, and the phenomenon is called deceleration or retardation.
Acceleration Graph

Instantaneous Acceleration

The average acceleration is measured over a long interval of time. On the other hand, instantaneous acceleration is the acceleration calculated for an infinitesimally small time interval. It can be found by setting the limit of the time interval in the above equation to zero.

\[ a = \lim_{\Delta t \to 0} \frac{\Delta v}{\Delta t} = \frac{dv}{dt} \]

Therefore, acceleration is the first derivative of the velocity with respect to time. Note that the velocity is the derivative of distance (x) over time. We can rewrite the above equation as

\[ a = \frac{dv}{dt} = \frac{d}{dt} \Big ( \frac{dx}{dt} \Big ) = \frac{d^2x}{dt^2} \]

Therefore, acceleration is the second derivative of distance with respect to time.

Acceleration from Newton’s Second Law

Acceleration can also be calculated directly from Newton’s Second Law. According to this law, the net force (F) on an object is given by the product of its mass (m) and acceleration (a). Mathematically, it is represented by

\[ F = ma \]

Rearranging this equation gives the acceleration a.

\[ a = \frac{F}{m} \]

Direction of Acceleration

The direction of acceleration depends on whether the object is speeding or slowing down and the direction of travel. Imagine a car traveling on a straight road such that it is speeding up. Its velocity increases with time. Its direction is along the direction of travel. Now, suppose the car is slowing down. Its velocity decreases with time. Its direction is opposite to the direction of travel. This type of acceleration, in which the acceleration vector is along the displacement vector, is called linear acceleration.

Suppose the car makes a turn around a curve path. Its velocity vector will change. We can use the concept of vector resolution to study its acceleration. Its velocity vector can be resolved into two components. One component is directed toward the center of curvature of the curve path, called the radial velocity. Another component is perpendicular to the radial velocity, called the tangential velocity. The rate of change of radial velocity is called radial acceleration and is directed radially inward. The rate of change of tangential velocity is called tangential acceleration. It is directed tangentially to the point under consideration on the curve path, as shown in the image below.

Suppose the car moves around a circular path. In that case, its radial acceleration is called centripetal acceleration, discussed in our article on centrifugal force.

Centripetal Acceleration

Example Problems

Problem 1: A motorcyclist starts from rest and speeds up uniformly to 60 miles per hour (mph) in 12 seconds. What was the magnitude of the average acceleration of the motorcyclist?

Solution:

Given vi = 0, vf = 60 mph, Δt = 12 s

Let us convert mph to m/s.

60 mph = (60 miles x 1.6 km/mile x 1000 m/km)/(1 hr x 3600 s/hr) = 26.67 m/s

The acceleration is

a = (vf – vi)/Δt = (26.67 m/s – 0)/12 s = 2.22 m/s

Problem 2: A racehorse coming out of the gate accelerates from rest to a velocity of 14.0 m/s due in 1.90 s. What is its average acceleration?

Solution:

Given vi = 0, vf = 14 m/s, Δt = 1.9 s

The acceleration is

a = (vf – vi)/Δt = (14 m/s – 0)/1.9 s = 7.37 m/s

Article was last reviewed on Monday, January 2, 2023

Related articles

Electron Capture Electron Capture
Neutron Emission Neutron Emission
Spectrophotometer Spectrophotometry
Gamma Decay Gamma Decay

Leave a Reply Cancel reply

Your email address will not be published.

玻璃钢生产厂家玻璃钢卡通人物雕塑定制马赛克玻璃钢雕塑厂玻璃钢雕塑工程销售公司玻璃钢仿真热气球雕塑台湾户外景观玻璃钢雕塑夸张人物表情玻璃钢雕塑长沙不锈钢仿古玻璃钢仿铜雕塑陕西景观玻璃钢雕塑哪家便宜普陀区正宗玻璃钢雕塑烟台市玻璃钢雕塑定制主题商场美陈市场报价玻璃钢人物雕塑制造黑龙江佛像玻璃钢雕塑设计河南玻璃钢雕塑报价南宁玻璃钢雕塑生产厂家四川景观玻璃钢雕塑价位装饰商场美陈报价大象玻璃钢雕塑生产厂家福州学校玻璃钢雕塑供应商澳门玻璃钢广场雕塑玻璃钢花盆座椅工厂安徽创意玻璃钢雕塑报价福州玻璃钢卡通雕塑费用江苏玻璃钢雕塑设计商李靖玻璃钢雕塑上海秋季商场美陈哪里买安徽玻璃钢雕塑大量销售上海玻璃钢卡通牛雕塑价格天津玻璃钢卡通雕塑厂家濮阳肖像玻璃钢雕塑制造香港通过《维护国家安全条例》两大学生合买彩票中奖一人不认账让美丽中国“从细节出发”19岁小伙救下5人后溺亡 多方发声单亲妈妈陷入热恋 14岁儿子报警汪小菲曝离婚始末遭遇山火的松茸之乡雅江山火三名扑火人员牺牲系谣言何赛飞追着代拍打萧美琴窜访捷克 外交部回应卫健委通报少年有偿捐血浆16次猝死手机成瘾是影响睡眠质量重要因素高校汽车撞人致3死16伤 司机系学生315晚会后胖东来又人满为患了小米汽车超级工厂正式揭幕中国拥有亿元资产的家庭达13.3万户周杰伦一审败诉网易男孩8年未见母亲被告知被遗忘许家印被限制高消费饲养员用铁锨驱打大熊猫被辞退男子被猫抓伤后确诊“猫抓病”特朗普无法缴纳4.54亿美元罚金倪萍分享减重40斤方法联合利华开始重组张家界的山上“长”满了韩国人?张立群任西安交通大学校长杨倩无缘巴黎奥运“重生之我在北大当嫡校长”黑马情侣提车了专访95后高颜值猪保姆考生莫言也上北大硕士复试名单了网友洛杉矶偶遇贾玲专家建议不必谈骨泥色变沉迷短剧的人就像掉进了杀猪盘奥巴马现身唐宁街 黑色着装引猜测七年后宇文玥被薅头发捞上岸事业单位女子向同事水杯投不明物质凯特王妃现身!外出购物视频曝光河南驻马店通报西平中学跳楼事件王树国卸任西安交大校长 师生送别恒大被罚41.75亿到底怎么缴男子被流浪猫绊倒 投喂者赔24万房客欠租失踪 房东直发愁西双版纳热带植物园回应蜉蝣大爆发钱人豪晒法院裁定实锤抄袭外国人感慨凌晨的中国很安全胖东来员工每周单休无小长假白宫:哈马斯三号人物被杀测试车高速逃费 小米:已补缴老人退休金被冒领16年 金额超20万

玻璃钢生产厂家 XML地图 TXT地图 虚拟主机 SEO 网站制作 网站优化