FOLLOWERS
Friday, May 08, 2015
ambil pedoman..ambil ikhtibar
Thursday, January 01, 2015
2015 --> alhamdulillah
Thursday, July 31, 2014
palestine ~ andai kita di tempat mereka
Saturday, June 28, 2014
selamat menyambut ramadhan 2014
Friday, June 27, 2014
sunnah-sunnah hari jumaat
Thursday, June 26, 2014
bagaimana berdepan dengan situasi anak2 yg berlatih puasa dlm cuaca yang amat panas ini
Saturday, May 10, 2014
dua emak
ok hobi aku masa dlm pantang ni adalah mengemop dan menyapu hahaha...
Wednesday, March 26, 2014
if it's me in her shoe ~ MH370
kuat kah sy?
dgn sedikit dugaan yang Dia telah berikan, sy dah merungut
siapa yang blh saya harapkan?
Monday, February 24, 2014
guru tak perlu laksana PBS? betul ke ni?
kang kalau cikgu stop, tetiba bln 6 dia suh on balik...naya cikgu wei nak cover yg tggl 3 bln tu.
tak paham pun takpe
Tuesday, June 26, 2012
kenali telefon awam di malaysia
Wednesday, May 16, 2012
teacher nowadays
Tuesday, May 08, 2012
100 tahun Nestle di sisimu (eh, baru 32 tahun lar :p)
pekena plak dengan milo panas bancuh pekat2 perghhhh..
Wednesday, April 04, 2012
CIMB nicol david KL OPEN SQUASH
Tuesday, November 22, 2011
undangan
Sunday, October 30, 2011
solar boat @ karnival mesra 1belia 1malaysia
Tuesday, June 14, 2011
science talk

ok sy paste kat sini overview mengenai rovers ni yg sy amik dr website dia: (baca tau. good information ni...bg yg berminat lar hehe)
The Mars Exploration Rover mission is part of NASA's Mars Exploration Program, a long-term effort of robotic exploration of the red planet.
Primary among the mission's scientific goals is to search for and characterize a wide range of rocks and soils that hold clues to past water activity on Mars. The spacecraft are targeted to sites on opposite sides of Mars that appear to have been affected by liquid water in the past. The landing sites are at Gusev Crater, a possible former lake in a giant impact crater, and Meridiani Planum, where mineral deposits (hematite) suggest Mars had a wet past.
After the airbag-protected landing craft settled onto the surface and opened, the rovers rolled out to take panoramic images. These images give scientists the information they need to select promising geological targets that tell part of the story of water in Mars' past. Then, the rovers drive to those locations to perform on-site scientific investigations.
These are the primary science instruments carried by the rovers:
- Panoramic Camera (Pancam): for determining the mineralogy, texture, and structure of the local terrain.
- Miniature Thermal Emission Spectrometer (Mini-TES): for identifying promising rocks and soils for closer examination and for determining the processes that formed Martian rocks. The instrument is designed to look skyward to provide temperature profiles of the Martian atmosphere.
- Mössbauer Spectrometer (MB): for close-up investigations of the mineralogy of iron-bearing rocks and soils.
- Alpha Particle X-Ray Spectrometer (APXS): for close-up analysis of the abundances of elements that make up rocks and soils.
- Magnets: for collecting magnetic dust particles. The Mössbauer Spectrometer and the Alpha Particle X-ray Spectrometer are designed to analyze the particles collected and help determine the ratio of magnetic particles to non-magnetic particles. They can also analyze the composition of magnetic minerals in airborne dust and rocks that have been ground by the Rock Abrasion Tool.
- Microscopic Imager (MI): for obtaining close-up, high-resolution images of rocks and soils.
- Rock Abrasion Tool (RAT): for removing dusty and weathered rock surfaces and exposing fresh material for examination by instruments onboard.
Before landing, the goal for each rover was to drive up to 40 meters (about 44 yards) in a single day, for a total of up to one 1 kilometer (about three-quarters of a mile). Both goals have been far exceeded! Where are the rovers now?
Moving from place to place, the rovers perform on-site geological investigations. Each rover is sort of the mechanical equivalent of a geologist walking the surface of Mars. The mast-mounted cameras are mounted 1.5 meters(5 feet) high and provide 360-degree, stereoscopic, humanlike views of the terrain. The robotic arm is capable of movement in much the same way as a human arm with an elbow and wrist, and can place instruments directly up against rock and soil targets of interest. In the mechanical "fist" of the arm is a microscopic camera that serves the same purpose as a geologist's handheld magnifying lens. The Rock Abrasion Tool serves the purpose of a geologist's rock hammer to expose the insides of rocks.
persembahan pelajar SAS sblm talk bermula
Dr.William ni mgunakan American Eng so tak susah utk faham. body language dia pun blh tahan hehe.. kira berjaya utk menarik org dgr apa yg dia nak sampaikan. ada ketika nya, sy teringat subjek geofizik yg sy bljr masa buat degree dulu. soil-materials-etc etc...emmm dunia science mmg indah!!canon s95 and panasonic lumix lx5, this two compact camera with dslr quality photo dah jd aim terdekat sy hehe...before raya mesti dptkan jugak one of this hot gadjet, insyaallah...
http://bill.clancey.name
itu dulu utk entry kali ini. jumpa lagi!









