Which Of The Following Is A Scalar Quantity . Pressure refers to a perpendicular force applied per unit area on a surface. *which of the following best describes the difference between scalar and vector quantities?*.
which of the following quantities is a scalar? I need help from brainly.com
Which of the following is a scalar quantity? 52 m at an angle 17° east of north. Quantities which are having only magnitude but no direction are called scalar quantity.
which of the following quantities is a scalar? I need help
The effort needed to hammer a nail into some wood. Force, momentum, and acceleration are vector quantity because they have magnitude as well as direction. 52 m at an angle 17° east of north. Which one of the following is a scalar quantity?
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The electrostatic force is a vector quantity in nature. Since the speed of a body is irrespective of its direction, therefore it is a scalar quantity. For vector addition, you have to use law. Hence option 3 is incorrect. Pressure refers to a perpendicular force applied per unit area on a surface.
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€ € a 0 € b 4 € c 12 € d 16 (total 1 mark) 2 The pressure is a scalar quantity because it has magnitude but no direction associated with it. The heat needed to boil some water. Thereofore option 2 is the answer. *which of the following best describes the difference between scalar and vector quantities?*.
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52 m at an angle 17° east of north. Comment * comments ( 1) md shahariaz : A scalar is unchanged by any transformation in the coordinate system. Which force, in n, could not possibly be the resultant of these forces? Which of the following is a scalar quantity.
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Which of the following is a scalar quantity. So work is a scalar quantity. In the above equation work and charge are scalar quantities. The braking force needed to stop a car. A scalar quantity is defined as the physical quantity with magnitude and no direction.
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Quantities which are having only magnitude but no direction are called scalar quantity. Thereofore option 2 is the answer. A vector quantity is defined as the physical quantity that has both directions as well as magnitude. The intensity of the electric field is the force experienced for a unit positive charge. 52 m at an angle 17° east of north.
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€ € a 0 € b 4 € c 12 € d 16 (total 1 mark) 2 Speed is the rate of change of displacement with respect to its surrounding. Which of the following is a scalar quantity? A scalar is a quantity that can be expressed by specifying its magnitude only. Comment * comments ( 1) md shahariaz :
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The heat needed to boil some water. The thrust needed to lift a rocket off the ground. Speed is the rate of change of displacement with respect to its surrounding. The braking force needed to stop a car. Which of the following is a scalar quantity.
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Which of the following is a scalar quantity? In the above equation work and charge are scalar quantities. Thereofore option 2 is the answer. € € a 0 € b 4 € c 12 € d 16 (total 1 mark) 2 A scalar is a quantity that can be expressed by specifying its magnitude only.
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Hence electrostatic potential is a scalar quantity. Since the speed of a body is irrespective of its direction, therefore it is a scalar quantity. Which of the following is not a scalar quantity. Home / green board / miscellaneous / question. The intensity of the electric field is the force experienced for a unit positive charge.
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Which of the following is not a scalar quantity. € € a 0 € b 4 € c 12 € d 16 (total 1 mark) 2 In the above equation work and charge are scalar quantities. Mass, speed, distance, time, area, volume, density, temperature are examples of scalar quantity. The intensity of the electric field is the force experienced for.
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Which of the following is a scalar quantity? Pascal an isometric contraction results in _____, while an isotonic contraction results in _____ a. Quantities which are having only magnitude but no direction are called scalar quantity. Speed is the rate of change of displacement with respect to its surrounding. Which force, in n, could not possibly be the resultant of.
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Which force, in n, could not possibly be the resultant of these forces? So work is a scalar quantity. A vector quantity is defined as the physical quantity that has both directions as well as magnitude. € € a velocity € € b kinetic energy € € c force € € d momentum € (total 1 mark) 1 coplanar forces.
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Since the speed of a body is irrespective of its direction, therefore it is a scalar quantity. In physics, scalars and vectors are two classes of physical quantities. The physical quantities for which both magnitude and direction are defined distinctly are known as vector quantities. A scalar is unchanged by any transformation in the coordinate system. Pascal an isometric contraction.
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Which of the following is a scalar quantity? Mass, speed, distance, time, area, volume, density, temperature are examples of scalar quantity. And w ork is scalar product of the two vectors, force and displacement. The braking force needed to stop a car. Which of the following is not a scalar quantity.
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Which of the following is not a scalar quantity 1) temperature2) coefficient of friction3) charge4) impulse. Scalars are the physical quantities that only have magnitude, or a sign as well, and no other characteristics. Hence option 3 is incorrect. Which of the following is a scalar quantity? € € a 0 € b 4 € c 12 € d 16.