The dimensional formula of force is ([M] \cdot [L] \cdot [T]^{-2}), where ([M]) represents mass, ([L]) represents length, and ([T]) represents time.
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Hi,
The original answer was:
Planck's Constant = Energy/Frequency = [ML2T-2]/[T-1] = [ML2T-2]
So, Dimensional Formula of Planck's Constant = [ML2T-2]
In fact, it should read:
Planck's Constant = Energy/Frequency = [ML2T-2]/[T-1] = [ML2T-1]
So, Dimensional Formula of Planck's Constant = [ML2T-1]
Regards,
Lho
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so stupid question
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The dimensional formula of work is given by [ML^2T^-2]. It is expressed in terms of mass (M), length (L), and time (T).
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The dimensional formula of areal velocity is [T^-1], where T represents time. Areal velocity is defined as the rate of change of area with respect to time and is commonly used in the study of rotational motion or angular velocity. It is expressed in units of m²/s in the International System of Units.
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The dimensional formula for gravity g is [LT^-2] where L represents length (meters) and T represents time (seconds). This indicates that gravity is defined as acceleration due to gravity and has units of meters per second squared (m/s^2).
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The dimensional formula for heat capacity is [M L^2 T^-2 K^-1] and for specific heat capacity is [M L^2 T^-2 Θ^-1].
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y(young's modulus of rigidity)=stress/strain
now strain is dimensionless
hence y=stress
y=M L-1 T-2
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three dimensional
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two-dimensional
On a+ the answer is three-dimensional
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Lines are one-dimensional objects but they can be in 2-dimensional - or even 20-dimensional) space.
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Lines! Yes, they are one-dimensional. Points are zero dimensional, planes are two-dimensional, and prisms and such are three dimensional.
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zero-dimensional examples: Endpoints of edges (vertices and corners)
Zero-dimensional figures lie in two-dimensional planes.
one-dimensional examples: Edges of figures (sides and arcs)
One-dimensional figures lie in two-dimensional planes.
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3 dimensional geometry.
3 dimensional geometry.
3 dimensional geometry.
3 dimensional geometry.
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One dimensional is (probably) a line.
Two dimensional is a flat plain figure, showing length x width.
Three dimensional is a cubic shape, showing length x width x depth.
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The net of a 2 dimensional shape can be folded into a 3 dimensional shape
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No. A polygon is a 2-dimensional figure. A polyhedron is 3-dimensional.
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All three dimensional figures have more faces than a one dimensional figure.
There are an infinite number of one dimensional points on a three dimensional figure
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A map, painting, or photograph, are all two dimensional representatins of three dimensional objects
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3-dimensional, if it's in real life. If it's merely a picture, then it's a 2-dimensional object depicting something that's 3-dimensional.
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NET
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Earth is three-dimensional, but maps are two-dimensional.
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No because it's 3 dimensional but a straight line is 1 dimensional
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A net is a two-dimensional pattern that you can fold to form a three-dimensional figure.
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no it is a 4 dimensional figure not a 3 dimensional figure
* * * * *
No. A quadrilateral is a two dimensional figure. It has a length and a breadth and no more.
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There's no such thing as a two dimensional rectangular prism for a prism is three dimensional.
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No. The rules of two dimensional geometry can only be used for two dimensional geometry. You can take the basic principles of two dimensional geometry and alter them slightly to be able to apply to three dimensional solids
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Although they do stand for dimensions, the word together is 2-Dimensional and 3-Dimensional not just Dimensions.
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What two-dimensional shapes are most often associated with three-dimensional forms?
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A single dimensional array is an array of items. A two-dimensional array is an array of arrays of items.
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Two dimensional object is a plane figure where as three dimensional object is solid (space) figure.
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No, they are two dimensional representations of three dimensional solids.
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A painting is a two dimensional artwork; a sculpture is a three dimensional artwork.
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None. Edges are one lines (1-dimensional) not shapes like squares (2-dimensional).
None. Edges are one lines (1-dimensional) not shapes like squares (2-dimensional).
None. Edges are one lines (1-dimensional) not shapes like squares (2-dimensional).
None. Edges are one lines (1-dimensional) not shapes like squares (2-dimensional).
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