मराठी

The Coordinates of a Point Are (3, –2, 5). Write Down the Coordinates of Seven Points Such that the Absolute Values of Their Coordinates Are the Same as Those of the Coordinates of the Given Point.

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प्रश्न

The coordinates of a point are (3, –2, 5). Write down the coordinates of seven points such that the absolute values of their coordinates are the same as those of the coordinates of the given point.

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उत्तर

The seven coordinates are as follows: 

\[\left( - 3, 2, 5 \right)\]
\[\left( 3, 2, - 5 \right)\]
\[\left( - 3, - 2, 5 \right)\]
\[\left( 3, - 2, - 5 \right)\]
\[\left( - 3, 2, - 5 \right)\]
\[\left( - 3, - 2, - 5 \right)\]
\[\left( 3, 2, 5 \right)\]

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पाठ 28: Introduction to three dimensional coordinate geometry - Exercise 15.1 [पृष्ठ ७]

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आर.डी. शर्मा Mathematics [English] Class 11
पाठ 28 Introduction to three dimensional coordinate geometry
Exercise 15.1 | Q 7 | पृष्ठ ७

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संबंधित प्रश्‍न

Name the octants in which the following points lie:

(1, 2, 3), (4, –2, 3), (4, –2, –5), (4, 2, –5), (–4, 2, –5), (–4, 2, 5),

(–3, –1, 6), (2, –4, –7).


If the origin is the centroid of the triangle PQR with vertices P (2a, 2, 6), Q (–4, 3b, –10) and R (8, 14, 2c), then find the values of a, b and c.


Name the octants in which the following points lie: 

(–5, –3, –2) 


Name the octants in which the following points lie: 

(–7, 2 – 5)


Find the image  of: 

 (–2, 3, 4) in the yz-plane.


Find the image  of:

 (5, 2, –7) in the xy-plane.


Find the image  of: 

 (–5, 0, 3) in the xz-plane. 


Find the image  of: 

 (–4, 0, 0) in the xy-plane. 


Find the distances of the point P(–4, 3, 5) from the coordinate axes. 


Determine the point on z-axis which is equidistant from the points (1, 5, 7) and (5, 1, –4).


Find the points on z-axis which are at a distance \[\sqrt{21}\]from the point (1, 2, 3). 


Show that the points A(3, 3, 3), B(0, 6, 3), C(1, 7, 7) and D(4, 4, 7) are the vertices of a square.


Are the points A(3, 6, 9), B(10, 20, 30) and C(25, –41, 5), the vertices of a right-angled triangle?


Verify the following: 

 (0, 7, –10), (1, 6, –6) and (4, 9, –6) are vertices of an isosceles triangle. 


Verify the following: 

(0, 7, 10), (–1, 6, 6) and (–4, 9, –6) are vertices of a right-angled triangle.


Write the distance of the point P(3, 4, 5) from z-axis.


What is the locus of a point for which y = 0, z = 0?


Find the ratio in which the line segment joining the points (2, 4,5) and (3, −5, 4) is divided by the yz-plane.


Find the point on x-axis which is equidistant from the points A (3, 2, 2) and B (5, 5, 4).


The ratio in which the line joining the points (a, b, c) and (–a, –c, –b) is divided by the xy-plane is


The coordinates of the foot of the perpendicular drawn from the point P(3, 4, 5) on the yz- plane are


The length of the perpendicular drawn from the point P (3, 4, 5) on y-axis is 


The perpendicular distance of the point P(3, 3,4) from the x-axis is 


Find the direction cosines of the line passing through the points P(2, 3, 5) and Q(–1, 2, 4).


If a line makes an angle of 30°, 60°, 90° with the positive direction of x, y, z-axes, respectively, then find its direction cosines.


A plane meets the co-ordinates axis in A, B, C such that the centroid of the ∆ABC is the point (α, β, γ). Show that the equation of the plane is `x/alpha + y/beta + z/γ` = 3


Find the co-ordinates of the foot of perpendicular drawn from the point A(1, 8, 4) to the line joining the points B(0, –1, 3) and C(2, –3, –1).


If α, β, γ are the angles that a line makes with the positive direction of x, y, z axis, respectively, then the direction cosines of the line are ______.


If a line makes angles `pi/2, 3/4 pi` and `pi/4` with x, y, z axis, respectively, then its direction cosines are ______.


If a line makes angles α, β, γ with the positive directions of the coordinate axes, then the value of sin2α + sin2β + sin2γ is ______.


If the line drawn from the point (–2, – 1, – 3) meets a plane at right angle at the point (1, – 3, 3), find the equation of the plane


O is the origin and A is (a, b, c). Find the direction cosines of the line OA and the equation of plane through A at right angle to OA.


Find the length and the foot of perpendicular from the point `(1, 3/2, 2)` to the plane 2x – 2y + 4z + 5 = 0.


Find the equations of the line passing through the point (3,0,1) and parallel to the planes x + 2y = 0 and 3y – z = 0.


Find the equation of the plane through the points (2, 1, –1) and (–1, 3, 4), and perpendicular to the plane x – 2y + 4z = 10.


The plane 2x – 3y + 6z – 11 = 0 makes an angle sin–1(α) with x-axis. The value of α is equal to ______.


The angle between the line `vecr = (5hati - hatj - 4hatk) + lambda(2hati - hatj + hatk)` and the plane `vec.(3hati - 4hatj - hatk)` + 5 = 0 is `sin^-1(5/(2sqrt(91)))`.


If the foot of perpendicular drawn from the origin to a plane is (5, – 3, – 2), then the equation of plane is `vecr.(5hati - 3hatj - 2hatk)` = 38.


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