head 1.5; access; symbols; locks; strict; comment @# @; 1.5 date 2017.10.30.12.15.15; author root; state Exp; branches; next 1.4; 1.4 date 2017.06.18.01.17.00; author root; state Exp; branches; next 1.3; 1.3 date 2017.06.17.12.47.47; author root; state Exp; branches; next 1.2; 1.2 date 2017.06.16.15.07.02; author root; state Exp; branches; next 1.1; 1.1 date 2017.06.16.15.07.02; author root; state Exp; branches; next ; desc @This document (5. 5 Speed-time graph) is re-created by administrator on 29 March 2017 @ 1.5 log @This document (5. 5 Speed-time graph) is lastly updated by administrator status:PUBLISHED on 30 October 2017 @ text @{ "_id": { "$oid": "5943f4164975ac013d36fbc1" }, "_type": "GSystem", "access_policy": "PUBLIC", "altnames": "5. 5 Speed-time graph", "annotations": [], "attribute_set": [], "author_set": [ 1 ], "collection_set": [], "comment_enabled": false, "content": "

Let's do exercises

\r\n\r\n

(1) The following graph represents a motorcycle ride.
\r\n
\r\n      (i) Mark the point(s) on the graph that shows the motorcycle is at rest.
\r\n      (ii) Mark the point(s) on the graph that shows motorcycle with constant velocity.
\r\n   

\r\n 

\r\n                                     \"5\"
\r\n
\r\n                 \r\n\r\n

           (iii) Complete the table given below based on the graph.
\r\n                                          

\r\n\r\n\r\n\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\r\n
\r\n\t\t\t

Time 
\r\n\t\t\t(sec)

\r\n\t\t\t
\r\n\t\t\t

Speed
\r\n\t\t\t (m/s)

\r\n\t\t\t
\r\n\t\t\t

0

\r\n\t\t\t
\r\n\t\t\t

 

\r\n\t\t\t
\r\n\t\t\t

1

\r\n\t\t\t
\r\n\t\t\t

 

\r\n\t\t\t
\r\n\t\t\t

2

\r\n\t\t\t
\r\n\t\t\t

 

\r\n\t\t\t
\r\n\t\t\t

3

\r\n\t\t\t
\r\n\t\t\t

 

\r\n\t\t\t
\r\n\t\t\t

4

\r\n\t\t\t
\r\n\t\t\t

 

\r\n\t\t\t
\r\n\t\t\t

5

\r\n\t\t\t
\r\n\t\t\t

 

\r\n\t\t\t
\r\n\t\t\t

6

\r\n\t\t\t
\r\n\t\t\t

 

\r\n\t\t\t
\r\n\t\t\t

7

\r\n\t\t\t
\r\n\t\t\t

 

\r\n\t\t\t
\r\n\t\t\t

8

\r\n\t\t\t
\r\n\t\t\t

 

\r\n\t\t\t
\r\n\t\t\t

9

\r\n\t\t\t
\r\n\t\t\t

 

\r\n\t\t\t
\r\n\t\t\t

10

\r\n\t\t\t
\r\n\t\t\t

 

\r\n\t\t\t
\r\n\t\t\t

11

\r\n\t\t\t
\r\n\t\t\t

 

\r\n\t\t\t
\r\n\t\t\t

12

\r\n\t\t\t
 
\r\n \r\n\r\n

(2) Police control room receives an information that a black suspicious car is going to pass,     please stop it and check it. At 12\u2019o clock the car moves past the front of the station. The police start their patrolling jeep exactly at 12\u2019o clock but for 2 minutes they could not move the jeep due to some engine issues. Please answer:
\r\n      (i) If the car is moving still why the line is running parallel to the x axis horizontally?
\r\n      (ii) Please draw the first 2 minutes of the police jeep when it was not able to move. Draw the            line on this graph.
\r\n
\r\n                            
\"6\"

\r\n\r\n

 

\r\n\r\n

(3) Look at the graph and answer the following:
\r\n
\r\n     (i) Please identify which train is in motion and which is at rest.
\r\n     (ii) Tell us how these graphs are different.

\r\n 

\r\n                        \"7\"\r\n

 

\r\n\r\n

(4) Use the data given in the table below to plot the graph of two objects moving with different           velocities.

\r\n                            \r\n\r\n\r\n\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\t\r\n\t\t\r\n\t\r\n
\r\n\t\t\t

Time
\r\n\t\t\t(sec)

\r\n\t\t\t
\r\n\t\t\t

Object 1
\r\n\t\t\tSpeed (m/s)

\r\n\t\t\t
\r\n\t\t\t

Object 2
\r\n\t\t\tSpeed (m/s)

\r\n\t\t\t
\r\n\t\t\t

0

\r\n\t\t\t
\r\n\t\t\t

0

\r\n\t\t\t
\r\n\t\t\t

0

\r\n\t\t\t
\r\n\t\t\t

1

\r\n\t\t\t
\r\n\t\t\t

2

\r\n\t\t\t
\r\n\t\t\t

1

\r\n\t\t\t
\r\n\t\t\t

2

\r\n\t\t\t
\r\n\t\t\t

4

\r\n\t\t\t
\r\n\t\t\t

2

\r\n\t\t\t
\r\n\t\t\t

3

\r\n\t\t\t
\r\n\t\t\t

6

\r\n\t\t\t
\r\n\t\t\t

3

\r\n\t\t\t
\r\n\t\t\t

4

\r\n\t\t\t
\r\n\t\t\t

8

\r\n\t\t\t
\r\n\t\t\t

4

\r\n\t\t\t
\r\n\t\t\t

5

\r\n\t\t\t
\r\n\t\t\t

10

\r\n\t\t\t
\r\n\t\t\t

5

\r\n\t\t\t
\r\n\t\t\t

6

\r\n\t\t\t
\r\n\t\t\t

12

\r\n\t\t\t
\r\n\t\t\t

6

\r\n\t\t\t
\r\n\r\n

 

\r\n\r\n

(5) Look at these graphs \u2013 do they represent same kind of motion? How do they defer from each       other?

\r\n                  \"9\"            \"9A\"\r\n

 

\r\n\r\n

Problem:

\r\n\r\n

Look at the velocity-time graph of a moving object.\"10\"
\r\nThe area enclosed by the velocity-time curve and time axis gives you the total distance covered by the moving object. You will learn this in the equation of motion. Please fill up the blanks to get the distance for the graph given below.

\r\n\r\n


\r\nArea of a triangle = \u00bd x a x b                                             
\r\n                             = \u00bd x......x.......
\r\n                             = 36 unit

\r\n 

\r\n\r\n

You will use this method to find the distance in section on equation of motion, where you will learn how to relate four quantities to get equations to work out complex problems of motion.

\r\n
\r\n
\r\n
\r\n
\r\n ", "content_org": "...\r\n


\r\nExcercise 1:

\r\nLook at the following graph which shows a motorcycle ride.
\r\n(i) Mark the point(s) on the graph that shows the motorcycle is at rest.
\r\n(ii) Mark the point(s) on the graph that shows motorcycle with constant velocity.
\r\n(iii) Complete the table given below based on the graph.
\r\nImage**\r\n\r\n

Excercise 2:

\r\nPolice control room recieves an information that a black suspicious car is going to pass, please stop it and check it. At 12\u2019o clock the car passes in front of the station. The police start their patrolling jeep exactly at 12\u2019o clock but for 2 minutes they could not move the car due to some engine issues. Please answer:
\r\nImage**\r\n\r\n

Excercise 3:

\r\nLook at the graph and answer the following:
\r\n(i) Please identify which train is in motion and which one is at rest.
\r\n(ii)Tell us how these graph are different.
\r\nImage**\r\n\r\n

Excercise 4:

\r\nUse the data given in the table below to plot the graph of two objects moving withdifferent velocities.
\r\nImage**\r\n\r\n

Excercise 5:

\r\nLook at these graphs \u2013 do they represent same kind of motion: how do they defer from each other?
\r\nImage**\r\n\r\n

Problem:

\r\nLook at the velocity-time graph of a moving object. The area enclosed by the velocity-time curve and time axis gives you the total distance covered by the moving object. You will learn this in the equation of motion. Please fill up the blanks to get the distance for the graph given below.
\r\nArea of a triangle = \u00bd x a x b
\r\n                             = \u00bd x......x.......
\r\n                             = 36 unit
\r\n
\r\nYou will use this method to find the distance in section on equation of motion, where you will learn how to relate four quantities to get equations
\r\nto work out complex problems of motion.
\r\n
\r\n ", "contributors": [ 1 ], "created_at": 1490846838898, "created_by": 1, "featured": false, "group_set": [ { "$oid": "5943f3f94975ac013d36fa53" } ], "if_file": { "mid": { "id": null, "relurl": null }, "mime_type": null, "original": { "id": null, "relurl": null }, "thumbnail": { "id": null, "relurl": null } }, "language": [ "en", "English" ], "last_update": 1509385514986, "legal": { "copyright": "CC-BY-SA 4.0 unported", "license": "HBCSE" }, "location": [], "login_required": false, "member_of": [ { "$oid": "5752ad552e01310a05dca4a1" } ], "modified_by": 1, "module_set": [], "name": "5. 5 Speed-time graph", "origin": [ { "fork_of": { "$oid": "58db9c6e5a162d0158758b00" } } ], "plural": null, "post_node": [], "prior_node": [ { "$oid": "5943f4114975ac013d36fb85" } ], "property_order": [], "rating": [], "relation_set": [], "snapshot": { "58ca243b5a162d013c51f729": "1.6", "5943f3f94975ac013d36fa53": "1.4" }, "start_publication": null, "status": "PUBLISHED", "tags": [], "type_of": [], "url": "None" }@ 1.4 log @This document (5. 5 Speed-time graph) is lastly updated by administrator status:PUBLISHED on 18 June 2017 @ text @d7 1 a7 1 "altnames": "Velocity-time graph", d47 1 a47 1 "last_update": 1497768420421, d80 2 a81 1 "58ca243b5a162d013c51f729": "1.6" @ 1.3 log @This document (5. 5 Speed-time graph) is lastly updated by administrator status:PUBLISHED on 17 June 2017 @ text @d20 1 a20 1 "created_at": 1490827038898, d47 1 a47 1 "last_update": 1497723467846, @ 1.2 log @This document (5. 5 Speed-time graph) is lastly updated by administrator status:PUBLISHED on 16 June 2017 @ text @d47 1 a47 1 "last_update": 1497645422791, @ 1.1 log @Initial revision @ text @d47 1 a47 1 "last_update": 1497645422176, d71 5 a75 1 "prior_node": [], @